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description Publicationkeyboard_double_arrow_right Article , Other literature type , Preprint , Journal 2019Embargo end date: 01 Jan 2019 France, Chile, Germany, Switzerland, France, Australia, Brazil, France, Italy, Germany, United Kingdom, France, Spain, France, United Kingdom, France, Germany, Spain, France, Australia, France, ItalyPublisher:Elsevier BV Publicly fundedFunded by:NSERC, UKRI | RootDetect: Remote Detect..., EC | INFIERI +2 projectsNSERC ,UKRI| RootDetect: Remote Detection and Precision Management of Root Health ,EC| INFIERI ,EC| CTA-PP ,EC| CTA-DEVAuthors: M. Ostrowski;N. Renault-Tinacci;
T. Suomijärvi; Takeshi Nakamori; +196 AuthorsN. Renault-Tinacci
N. Renault-Tinacci in OpenAIREM. Ostrowski;N. Renault-Tinacci;
T. Suomijärvi; Takeshi Nakamori; T.R.N. Ekoume;N. Renault-Tinacci
N. Renault-Tinacci in OpenAIREMaria Chernyakova;
Maria Chernyakova
Maria Chernyakova in OpenAIRETomohiro Inada;
Tomohiro Inada
Tomohiro Inada in OpenAIREMaria Concetta Maccarone;
Alison Mitchell;Maria Concetta Maccarone
Maria Concetta Maccarone in OpenAIREA. Nagai;
A. Nagai
A. Nagai in OpenAIREAndrea Bulgarelli;
Geoff Romeo;Andrea Bulgarelli
Andrea Bulgarelli in OpenAIREA. Berti;
A. Berti
A. Berti in OpenAIREAntonio Stamerra;
R. de Cássia dos Anjos;Antonio Stamerra
Antonio Stamerra in OpenAIRER. J. White;
Carlo Vigorito; Helene Sol; G. Ferrand; V. Vitale; F. Di Pierro;R. J. White
R. J. White in OpenAIREMassimo Persic;
Massimo Persic
Massimo Persic in OpenAIREDaniel Morcuende;
Jonathan Blazek; Marita Krause;Daniel Morcuende
Daniel Morcuende in OpenAIREVito Conforti;
S. Rainò; Ruben Alfaro;Vito Conforti
Vito Conforti in OpenAIRESaverio Lombardi;
D. Zavrtanik; German Martinez; Luisa Arrabito; Konstancja Satalecka; Gianluca Giavitto; Pierre Brun; Jacco Vink; M. de Naurois; M. V. Fonseca; E. Fiandrini; Pietro Bruno; Fuyuki Tokanai; M. Nöthe;Saverio Lombardi
Saverio Lombardi in OpenAIREH.-S. Zechlin;
Jaime Rosado;H.-S. Zechlin
H.-S. Zechlin in OpenAIREC. J. Todero Peixoto;
C. J. Todero Peixoto
C. J. Todero Peixoto in OpenAIREEva Sciacca;
M. Prouza;Eva Sciacca
Eva Sciacca in OpenAIRET. Greenshaw;
T. Greenshaw
T. Greenshaw in OpenAIREV. I. Zhdanov;
J. J. Rodríguez Vázquez; M. Mariotti;V. I. Zhdanov
V. I. Zhdanov in OpenAIREKonrad Bernlöhr;
Konrad Bernlöhr
Konrad Bernlöhr in OpenAIREJ. Knapp;
G. Ambrosi; R. López-Coto;J. Knapp
J. Knapp in OpenAIREN. Otte;
M. Polo; V. Vassiliev; Alessandro Costa; G. S. Varner;S. Fegan;
P. Cumani;S. Fegan
S. Fegan in OpenAIREM. López;
G. Chiaro;M. López
M. López in OpenAIREF. Cassol;
Diego F. Torres; Diego F. Torres;F. Cassol
F. Cassol in OpenAIREPol Bordas;
Paweł Świerk; A. M. Lopez;Pol Bordas
Pol Bordas in OpenAIREDaniele Gaggero;
Daniele Gaggero;Daniele Gaggero
Daniele Gaggero in OpenAIREL. Freixas Coromina;
M. Will;L. Freixas Coromina
L. Freixas Coromina in OpenAIREI. Agudo;
I. Agudo
I. Agudo in OpenAIREMaxim V. Barkov;
S. Karkar; B. De Lotto; E. Mach;Maxim V. Barkov
Maxim V. Barkov in OpenAIRELuca Zampieri;
Luca Zampieri
Luca Zampieri in OpenAIREJürgen Knödlseder;
Jürgen Knödlseder
Jürgen Knödlseder in OpenAIREG. Bonnoli;
T. Di Girolamo; D. della Volpe;G. Bonnoli
G. Bonnoli in OpenAIRETarek M. Hassan;
Tarek M. Hassan
Tarek M. Hassan in OpenAIREA. M. Brown;
Anatolii Zenin;A. M. Brown
A. M. Brown in OpenAIREHidetoshi Sano;
Hidetoshi Sano
Hidetoshi Sano in OpenAIREV. De Caprio;
V. De Caprio
V. De Caprio in OpenAIRER. Millul;
R. Millul
R. Millul in OpenAIRESebastian Diebold;
Julien Lefaucheur; R. J. García López;Sebastian Diebold
Sebastian Diebold in OpenAIREMarc Ribó;
Marc Ribó
Marc Ribó in OpenAIRERodrigo Nemmen;
Rodrigo Nemmen
Rodrigo Nemmen in OpenAIREG. Fontaine;
S. Flis; G. Emery; T. Tam;G. Fontaine
G. Fontaine in OpenAIREKonstantinos N. Gourgouliatos;
Konstantinos N. Gourgouliatos
Konstantinos N. Gourgouliatos in OpenAIREL. Mohrmann;
Nu. Komin;L. Mohrmann
L. Mohrmann in OpenAIREE. Fedorova;
C. Alispach;E. Fedorova
E. Fedorova in OpenAIREZ. Ou;
Juan Cortina;
Takashi Saito;Juan Cortina
Juan Cortina in OpenAIREElena Amato;
Elena Amato
Elena Amato in OpenAIREElisabetta Bissaldi;
Shanta M. Zimmer; J. Gironnet;Elisabetta Bissaldi
Elisabetta Bissaldi in OpenAIREG. Pareschi;
G. Pareschi
G. Pareschi in OpenAIRESylvain Chaty;
Sylvain Chaty
Sylvain Chaty in OpenAIRES. Vercellone;
Maria Magdalena González;S. Vercellone
S. Vercellone in OpenAIREI. Oya;
Heide Costantini;Daniel Nieto;
Daniel Nieto
Daniel Nieto in OpenAIREMarek Nikolajuk;
Farinaldo S. Queiroz; Jonathan S. Lapington;Marek Nikolajuk
Marek Nikolajuk in OpenAIREM. Perri;
M. Perri
M. Perri in OpenAIREJ. Becerra González;
J. Becerra González
J. Becerra González in OpenAIREB. Khélifi;
B. Khélifi
B. Khélifi in OpenAIREL. Di Venere;
L. Di Venere
L. Di Venere in OpenAIREJuan Abel Barrio;
A. Rugliancich; Łukasz Stawarz;Juan Abel Barrio
Juan Abel Barrio in OpenAIREE. O. Angüner;
E. de Oña Wilhelmi; T. Nagayoshi;E. O. Angüner
E. O. Angüner in OpenAIREN. Parmiggiani;
N. Parmiggiani
N. Parmiggiani in OpenAIREMiroslav Hrabovsky;
D. de Martino;Miroslav Hrabovsky
Miroslav Hrabovsky in OpenAIRET. Montaruli;
Thomas Murach; M. Iori;T. Montaruli
T. Montaruli in OpenAIREVincenzo Testa;
Vincenzo Testa
Vincenzo Testa in OpenAIREBohdan Hnatyk;
Bohdan Hnatyk
Bohdan Hnatyk in OpenAIREM. Fiori;
Lenka Tomankova; Juan Carlos Rodríguez-Ramírez; Reiko Orito; Petr Janecek; Satoshi Fukami; David A. Williams; A. Burtovoi;M. Fiori
M. Fiori in OpenAIREEnrico Cascone;
Reshmi Mukherjee; Etienne Lyard;Enrico Cascone
Enrico Cascone in OpenAIREMarcello Giroletti;
Marcello Giroletti
Marcello Giroletti in OpenAIREPetar Temnikov;
Petar Temnikov
Petar Temnikov in OpenAIREF. Salesa Greus;
F. Salesa Greus
F. Salesa Greus in OpenAIREQ. Feng;
R. Paoletti; Diego Falceta-Gonçalves;Stefan Kimeswenger;
Stefan Kimeswenger
Stefan Kimeswenger in OpenAIREA. Kong;
L. P. Taylor; Daniela Maria Ribeiro; Philip Kaaret;G. Morlino;
G. Morlino
G. Morlino in OpenAIRER. D. Parsons;
R. D. Parsons
R. D. Parsons in OpenAIRED. Nosek;
D. Nosek
D. Nosek in OpenAIREMichael Zacharias;
Michael Zacharias
Michael Zacharias in OpenAIREI. Sadeh;
I. Sadeh
I. Sadeh in OpenAIREFabio Iocco;
Hidetoshi Kubo; M. Hayashida; N. Hiroshima; Rodrigo Guedes Lang; Martin Pohl;Fabio Iocco
Fabio Iocco in OpenAIREM. Vecchi;
M. Vecchi;M. Vecchi
M. Vecchi in OpenAIREM. Nievas Rosillo;
Fulvio Gianotti; A. Fiasson; M. Garczarczyk;M. Nievas Rosillo
M. Nievas Rosillo in OpenAIREF. Arqueros;
F. Arqueros
F. Arqueros in OpenAIREN. Produit;
N. Produit
N. Produit in OpenAIREA. Morselli;
Thomas Lohse; Francesco Longo; D. Dominis Prester;A. Morselli
A. Morselli in OpenAIREManuel Meyer;
M. Zavrtanik;Manuel Meyer
Manuel Meyer in OpenAIREMatteo Cerruti;
Matteo Cerruti
Matteo Cerruti in OpenAIREEnrico Congiu;
Enrico Congiu
Enrico Congiu in OpenAIREJ. Kushida;
Jakub Juryšek; Jakub Juryšek;J. Kushida
J. Kushida in OpenAIREParamita Barai;
Agnieszka Slowikowska; Y. Kobayashi;Paramita Barai
Paramita Barai in OpenAIREErmanno Pietropaolo;
Q. Piel; L. Tosti; B. Bertucci;Ermanno Pietropaolo
Ermanno Pietropaolo in OpenAIREMichael G. Burton;
Michael G. Burton
Michael G. Burton in OpenAIREJ. M. Paredes;
J. M. Paredes
J. M. Paredes in OpenAIREdoi: 10.1016/j.astropartphys.2019.04.001 , 10.3204/pubdb-2019-02176 , 10.48550/arxiv.1904.01426 , 10.5167/uzh-185554
arXiv: 1904.01426
handle: 2066/204317 , 10261/189767 , 11586/348637 , 11365/1082110 , 10900/99174 , 11449/188943 , 2440/121474
doi: 10.1016/j.astropartphys.2019.04.001 , 10.3204/pubdb-2019-02176 , 10.48550/arxiv.1904.01426 , 10.5167/uzh-185554
arXiv: 1904.01426
handle: 2066/204317 , 10261/189767 , 11586/348637 , 11365/1082110 , 10900/99174 , 11449/188943 , 2440/121474
The Cherenkov Telescope Array (CTA) is the major next-generation observatory for ground-based very-high-energy gamma-ray astronomy. It will improve the sensitivity of current ground-based instruments by a factor of five to twenty, depending on the energy, greatly improving both their angular and energy resolutions over four decades in energy (from 20 GeV to 300 TeV). This achievement will be possible by using tens of imaging Cherenkov telescopes of three successive sizes. They will be arranged into two arrays, one per hemisphere, located on the La Palma island (Spain) and in Paranal (Chile). We present here the optimised and final telescope arrays for both CTA sites, as well as their foreseen performance, resulting from the analysis of three different large-scale Monte Carlo productions. Astroparticle physics 111, 35 - 53 (2019). doi:10.1016/j.astropartphys.2019.04.001 Published by Elsevier Science, Amsterdam [u.a.]
CORE arrow_drop_down Università degli Studi di Siena: USiena airArticle . 2019Full-Text: http://hdl.handle.net/11365/1082110Data sources: Bielefeld Academic Search Engine (BASE)Universidade Estadual Paulista São Paulo: Repositório Institucional UNESPArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)Recolector de Ciencia Abierta, RECOLECTAArticle . 2019Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2019 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2019 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTAZurich Open Repository and ArchiveArticle . 2019 . Peer-reviewedData sources: Zurich Open Repository and ArchiveUniversità degli Studi di Bari Aldo Moro: CINECA IRISArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)Université Savoie Mont Blanc: HALArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)Eberhard Karls University Tübingen: Publication SystemArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2019Data sources: Bielefeld Academic Search Engine (BASE)Pontificia Universidad Católica de Chile: Repositorio UCArticle . 2021Data sources: Bielefeld Academic Search Engine (BASE)University of Western Sydney (UWS): Research DirectArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)École Polytechnique, Université Paris-Saclay: HALArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)The University of Adelaide: Digital LibraryArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
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visibility 38visibility views 38 download downloads 48 Powered bymore_vert CORE arrow_drop_down Università degli Studi di Siena: USiena airArticle . 2019Full-Text: http://hdl.handle.net/11365/1082110Data sources: Bielefeld Academic Search Engine (BASE)Universidade Estadual Paulista São Paulo: Repositório Institucional UNESPArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)Recolector de Ciencia Abierta, RECOLECTAArticle . 2019Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2019 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2019 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTAZurich Open Repository and ArchiveArticle . 2019 . Peer-reviewedData sources: Zurich Open Repository and ArchiveUniversità degli Studi di Bari Aldo Moro: CINECA IRISArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)Université Savoie Mont Blanc: HALArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)Eberhard Karls University Tübingen: Publication SystemArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2019Data sources: Bielefeld Academic Search Engine (BASE)Pontificia Universidad Católica de Chile: Repositorio UCArticle . 2021Data sources: Bielefeld Academic Search Engine (BASE)University of Western Sydney (UWS): Research DirectArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)École Polytechnique, Université Paris-Saclay: HALArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)The University of Adelaide: Digital LibraryArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Preprint , Journal 2020Embargo end date: 01 Jan 2020 Italy, SpainPublisher:American Physical Society (APS) Funded by:EC | AstroFIt2, , HRZZ | Very high energy gamma-ra... +2 projectsEC| AstroFIt2 ,[no funder available] ,HRZZ| Very high energy gamma-ray astronomy with the MAGIC and CTA telescopes ,EC| PROBIST ,AKA| Intrinsic Very High Energy Gamma-ray Emission of BlazarsAuthors:Antonio Stamerra;
R. López-Coto; Rodolfo Carosi; Yuki Iwamura; +184 AuthorsAntonio Stamerra
Antonio Stamerra in OpenAIREAntonio Stamerra;
R. López-Coto; Rodolfo Carosi; Yuki Iwamura; Martin Will;Antonio Stamerra
Antonio Stamerra in OpenAIREE. Molina;
E. Molina
E. Molina in OpenAIREAlessia Spolon;
Alessia Spolon
Alessia Spolon in OpenAIREJ. M. Paredes;
Yating Chai; Y. Kobayashi; L. Di Venere;J. M. Paredes
J. M. Paredes in OpenAIREJuan Abel Barrio;
C. Perennes;Juan Abel Barrio
Juan Abel Barrio in OpenAIRESidika Merve Colak;
Sidika Merve Colak
Sidika Merve Colak in OpenAIREP. Da Vela;
Nikola Godinovic; R. Mirzoyan; Kazuma Ishio;P. Da Vela
P. Da Vela in OpenAIRESerena Loporchio;
Adrian Biland;Serena Loporchio
Serena Loporchio in OpenAIREMarc Ribó;
Marc Ribó
Marc Ribó in OpenAIREL. A. Antonelli;
Manuela Mallamaci;L. A. Antonelli
L. A. Antonelli in OpenAIREChristian Fruck;
Victoria Moreno; Elina Lindfors;Christian Fruck
Christian Fruck in OpenAIREJuan Cortina;
Ll. Font;Juan Cortina
Juan Cortina in OpenAIRESimone Mender;
Simone Mender
Simone Mender in OpenAIREJorge Otero-Santos;
Ž. Bošnjak; Kai Phillip Schmidt; John Hoang; Mitsunari Takahashi; T. Schweizer; B. De Lotto;Jorge Otero-Santos
Jorge Otero-Santos in OpenAIREVitaly Neustroev;
N. Giglietto;Vitaly Neustroev
Vitaly Neustroev in OpenAIREMichele Doro;
F Longo; F Longo;Michele Doro
Michele Doro in OpenAIREV. D'Elia;
Yoshiki Ohtani; Lab Saha; Luca Tosti;V. D'Elia
V. D'Elia in OpenAIREDaniel Kerszberg;
L. Nogués; G. Maneva;Daniel Kerszberg
Daniel Kerszberg in OpenAIREJordi Delgado;
D. Ninci;Jordi Delgado
Jordi Delgado in OpenAIREG. Busetto;
G. Busetto
G. Busetto in OpenAIREMarie Karjalainen;
Pratik Majumdar;Marie Karjalainen
Marie Karjalainen in OpenAIRED. Miceli;
D. Miceli
D. Miceli in OpenAIREJ. Becerra González;
A. Rugliancich; P. Munar-Adrover; Camilla Maggio;J. Becerra González
J. Becerra González in OpenAIREDavide Depaoli;
Davide Depaoli
Davide Depaoli in OpenAIREDaniel Morcuende;
Ivica Puljak;Daniel Morcuende
Daniel Morcuende in OpenAIREAlessio Berti;
Masahiro Teshima; Masahiro Teshima;Alessio Berti
Alessio Berti in OpenAIREE. Do Souto Espiñeira;
E. Do Souto Espiñeira
E. Do Souto Espiñeira in OpenAIREElisa Bernardini;
Toshiaki Inada;Elisa Bernardini
Elisa Bernardini in OpenAIREM. Vazquez Acosta;
M. Vazquez Acosta
M. Vazquez Acosta in OpenAIRES. Ventura;
Marina Manganaro;S. Ventura
S. Ventura in OpenAIREVassil Verguilov;
Vassil Verguilov
Vassil Verguilov in OpenAIREElisa Prandini;
Elisa Prandini
Elisa Prandini in OpenAIREJose Luis Contreras;
Jose Luis Contreras
Jose Luis Contreras in OpenAIREWolfgang Rhode;
Karl Mannheim;Wolfgang Rhode
Wolfgang Rhode in OpenAIREM. Garczarczyk;
M. Garczarczyk
M. Garczarczyk in OpenAIREMoritz Hütten;
B. Machado de Oliveira Fraga; J. Herrera; V. Fallah Ramazani; P. G. Prada Moroni; Bernd Schleicher;Moritz Hütten
Moritz Hütten in OpenAIRESaverio Lombardi;
Riccardo Paoletti;Saverio Lombardi
Saverio Lombardi in OpenAIREDaniel Mazin;
Daniel Mazin;Daniel Mazin
Daniel Mazin in OpenAIREU. Barres de Almeida;
U. Barres de Almeida
U. Barres de Almeida in OpenAIREG. Ferrara;
F. Di Pierro;G. Ferrara
G. Ferrara in OpenAIREM. Peresano;
Dario Hrupec; Daniela Dorner;M. Peresano
M. Peresano in OpenAIREStefan Cikota;
Stefan Cikota
Stefan Cikota in OpenAIREJose Miguel Miranda;
Jose Miguel Miranda
Jose Miguel Miranda in OpenAIRED. Elsaesser;
Y. Kajiwara; N. Torres-Albà; D. Zarić; D. Strom;D. Elsaesser
D. Elsaesser in OpenAIREAshot Chilingarian;
L. Pavletić; E. Colombo;Ashot Chilingarian
Ashot Chilingarian in OpenAIREStefano Covino;
K. Noda; Alice Donini; Tomislav Terzić; Hidetoshi Kubo;Stefano Covino
Stefano Covino in OpenAIREMatteo Cerruti;
Matteo Cerruti
Matteo Cerruti in OpenAIRELuca Foffano;
Luca Foffano
Luca Foffano in OpenAIRETjark Miener;
Lara Nava; Lara Nava; Abelardo Moralejo;Tjark Miener
Tjark Miener in OpenAIRESeiya Nozaki;
Seiya Nozaki
Seiya Nozaki in OpenAIREP. Temnikov;
David A. Green; Sargis Gasparyan; Francesco Dazzi; Takeshi Oka; Alexander Hahn; Chiara Righi;P. Temnikov
P. Temnikov in OpenAIREManuel Delfino;
Wrijupan Bhattacharyya;Manuel Delfino
Manuel Delfino in OpenAIREJ. van Scherpenberg;
Victor A. Acciari;J. van Scherpenberg
J. van Scherpenberg in OpenAIREYusuke Suda;
R. J. García López;Yusuke Suda
Yusuke Suda in OpenAIREJulian Sitarek;
Satoshi Fukami; M. Palatiello; M. V. Fonseca; Saša Mićanović;Julian Sitarek
Julian Sitarek in OpenAIREM. Minev;
M. Minev
M. Minev in OpenAIREA. López-Oramas;
Carlo Vigorito; Kari Nilsson; V. Vitale;A. López-Oramas
A. López-Oramas in OpenAIREMassimo Persic;
M. I. Martínez; Damir Lelas;Massimo Persic
Massimo Persic in OpenAIREPablo Peñil;
Pablo Peñil
Pablo Peñil in OpenAIREPawel Gliwny;
C. Nigro; Ferdinando Giordano; I. Snidaric; A. Arbet Engels; Lorenzo Bellizzi;Pawel Gliwny
Pawel Gliwny in OpenAIRENarek Sahakyan;
Martin Makariev; I. Vovk; Shunsuke Sakurai; U. Colin; M. A. Lopez; Sanae Inoue;Narek Sahakyan
Narek Sahakyan in OpenAIREGiacomo Bonnoli;
Giacomo Bonnoli
Giacomo Bonnoli in OpenAIREE. Moretti;
Mosè Mariotti; Stefano Ansoldi; Stefano Ansoldi; Alicia Fattorini; Giovanni Ceribella; Konstancja Satalecka; M. Strzys;E. Moretti
E. Moretti in OpenAIREF. Leone;
David Paneque;F. Leone
F. Leone in OpenAIREWlodek Bednarek;
Wlodek Bednarek
Wlodek Bednarek in OpenAIREGiacomo D'Amico;
T. Surić; L. Maraschi; Ana Babić; Tomoki Saito; D. Dominis Prester;Giacomo D'Amico
Giacomo D'Amico in OpenAIREM. Gaug;
Oscar Blanch;
Oscar Blanch
Oscar Blanch in OpenAIRED. Hadasch;
D. Hadasch
D. Hadasch in OpenAIREJunko Kushida;
A. De Angelis;Junko Kushida
Junko Kushida in OpenAIREJ. Rico;
Kyoshi Nishijima;Alessandra Lamastra;
Alessandra Lamastra
Alessandra Lamastra in OpenAIRECiro Bigongiari;
Léa Jouvin; Dorota Sobczyńska; G. Vanzo; B. Banerjee; Jürgen Besenrieder;Ciro Bigongiari
Ciro Bigongiari in OpenAIREFabrizio Tavecchio;
Fabrizio Tavecchio
Fabrizio Tavecchio in OpenAIREDominik Baack;
Dominik Baack
Dominik Baack in OpenAIREOn January 14, 2019, the Major Atmospheric Gamma Imaging Cherenkov telescopes detected GRB 190114C above 0.2 TeV, recording the most energetic photons ever observed from a gamma-ray burst. We use this unique observation to probe an energy dependence of the speed of light in vacuo for photons as predicted by several quantum gravity models. Based on a set of assumptions on the possible intrinsic spectral and temporal evolution, we obtain competitive lower limits on the quadratic leading order of speed of light modification. 8 pages, 5 figures, Published in Physical Review Letters, Corresponding authors: Tomislav Terzi\'c (tterzic@phy.uniri.hr), Giacomo D'Amico (damico@mppmu.mpg.de), Daniel Kerszberg (dkerszberg@ifae.es), Cedric Perennes (perennes.cedric@gmail.com)
Physical Review Lett... arrow_drop_down Recolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTAPhysical Review LettersArticle . 2020 . Peer-reviewedLicense: APS Licenses for Journal Article Re-useData sources: CrossrefUniversità degli Studi di Siena: USiena airArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2020License: arXiv Non-Exclusive DistributionData sources: DataciteUniversità degli Studi di Bari Aldo Moro: CINECA IRISArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen hybrid 49 citations 49 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert Physical Review Lett... arrow_drop_down Recolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTAPhysical Review LettersArticle . 2020 . Peer-reviewedLicense: APS Licenses for Journal Article Re-useData sources: CrossrefUniversità degli Studi di Siena: USiena airArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2020License: arXiv Non-Exclusive DistributionData sources: DataciteUniversità degli Studi di Bari Aldo Moro: CINECA IRISArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Other literature type 2023Publisher:OpenAlex Authors: Hidetarô Abe; Shoko Abe;V. A. Acciari;
V. A. Acciari
V. A. Acciari in OpenAIREI. Agudo;
+96 AuthorsI. Agudo
I. Agudo in OpenAIREHidetarô Abe; Shoko Abe;V. A. Acciari;
V. A. Acciari
V. A. Acciari in OpenAIREI. Agudo;
T. Aniello;I. Agudo
I. Agudo in OpenAIRES. Ansoldi;
S. Ansoldi
S. Ansoldi in OpenAIREL. A. Antonelli;
L. A. Antonelli
L. A. Antonelli in OpenAIREA. Arbet Engels;
A. Arbet Engels
A. Arbet Engels in OpenAIRECornelia Arcaro;
Cornelia Arcaro
Cornelia Arcaro in OpenAIREManuel Artero;
Manuel Artero
Manuel Artero in OpenAIREKatsuaki Asano;
Katsuaki Asano
Katsuaki Asano in OpenAIREDominik Baack;
Dominik Baack
Dominik Baack in OpenAIREAna Babić;
Ana Babić
Ana Babić in OpenAIREAndrés Baquero;
Andrés Baquero
Andrés Baquero in OpenAIREU. Barres de Almeida;
U. Barres de Almeida
U. Barres de Almeida in OpenAIREJ. A. Barrio;
J. A. Barrio
J. A. Barrio in OpenAIREIvana Batković;
Joshua Ryo Baxter;Ivana Batković
Ivana Batković in OpenAIREJ. Becerra González;
J. Becerra González
J. Becerra González in OpenAIREW. Bednarek;
W. Bednarek
W. Bednarek in OpenAIREE. Bernardini;
E. Bernardini
E. Bernardini in OpenAIREM. Bernardos;
M. Bernardos
M. Bernardos in OpenAIREAlessio Berti;
Jürgen Besenrieder;Alessio Berti
Alessio Berti in OpenAIREW. Bhattacharyya;
W. Bhattacharyya
W. Bhattacharyya in OpenAIREC. Bigongiari;
C. Bigongiari
C. Bigongiari in OpenAIREA. Biland;
A. Biland
A. Biland in OpenAIREO. Blanch-Bigas;
O. Blanch-Bigas
O. Blanch-Bigas in OpenAIREG. Bonnoli;
G. Bonnoli
G. Bonnoli in OpenAIREZeljko J. Bosnjak;
Zeljko J. Bosnjak
Zeljko J. Bosnjak in OpenAIREIrene Burelli;
Irene Burelli
Irene Burelli in OpenAIREG. Busetto;
G. Busetto
G. Busetto in OpenAIRER. Carosi;
R. Carosi
R. Carosi in OpenAIREM. Carretero-Castrillo;
Alberto J. Castro‐Tirado;M. Carretero-Castrillo
M. Carretero-Castrillo in OpenAIREGiovanni Ceribella;
Giovanni Ceribella
Giovanni Ceribella in OpenAIREYating Chai;
Yating Chai
Yating Chai in OpenAIREA. Chilingarian;
A. Chilingarian
A. Chilingarian in OpenAIREStefan Cikota;
Stefan Cikota
Stefan Cikota in OpenAIREE. Colombo;
E. Colombo
E. Colombo in OpenAIREJ. L. Contreras;
J. L. Contreras
J. L. Contreras in OpenAIREJ. Cortina;
J. Cortina
J. Cortina in OpenAIRES. Covino;
S. Covino
S. Covino in OpenAIREGiacomo D'Amico;
Giacomo D'Amico
Giacomo D'Amico in OpenAIREV. D'Elia;
V. D'Elia
V. D'Elia in OpenAIREP. Da Vela;
P. Da Vela
P. Da Vela in OpenAIREF. Dazzi;
F. Dazzi
F. Dazzi in OpenAIREA. De Angelis;
A. De Angelis
A. De Angelis in OpenAIREB. De Lotto;
B. De Lotto
B. De Lotto in OpenAIREA. Del Popolo;
A. Del Popolo
A. Del Popolo in OpenAIREM. Delfino;
M. Delfino
M. Delfino in OpenAIREJ. Delgado;
J. Delgado
J. Delgado in OpenAIREC. Delgado Mendez;
C. Delgado Mendez
C. Delgado Mendez in OpenAIREDavide Depaoli;
Davide Depaoli
Davide Depaoli in OpenAIREF. Di Pierro;
F. Di Pierro
F. Di Pierro in OpenAIREL. Di Venere;
L. Di Venere
L. Di Venere in OpenAIREE. Do Souto Espiñeira;
E. Do Souto Espiñeira
E. Do Souto Espiñeira in OpenAIRED. Dominis Prester;
D. Dominis Prester
D. Dominis Prester in OpenAIREAlice Donini;
Alice Donini
Alice Donini in OpenAIRED. Dorner;
D. Dorner
D. Dorner in OpenAIREM. Doro;
M. Doro
M. Doro in OpenAIRED. Elsäesser;
D. Elsäesser
D. Elsäesser in OpenAIREGabriel Emery;
Gabriel Emery
Gabriel Emery in OpenAIREJuan Escudero;
Juan Escudero
Juan Escudero in OpenAIREV. Fallah Ramazani;
V. Fallah Ramazani
V. Fallah Ramazani in OpenAIREL. Fariña;
L. Fariña
L. Fariña in OpenAIREAlicia Fattorini;
Alicia Fattorini
Alicia Fattorini in OpenAIRELuca Foffano;
Luca Foffano
Luca Foffano in OpenAIREL. Font;
L. Font
L. Font in OpenAIREC. Fruck;
C. Fruck
C. Fruck in OpenAIRESatoshi Fukami;
Satoshi Fukami
Satoshi Fukami in OpenAIREYasushi Fukazawa;
Yasushi Fukazawa
Yasushi Fukazawa in OpenAIRER. J. García López;
R. J. García López
R. J. García López in OpenAIREM. Garczarczyk;
M. Garczarczyk
M. Garczarczyk in OpenAIRESargis Gasparyan;
Sargis Gasparyan
Sargis Gasparyan in OpenAIREM. Gaug;
M. Gaug
M. Gaug in OpenAIREJoão Gabriel Giesbrecht Paiva;
João Gabriel Giesbrecht Paiva
João Gabriel Giesbrecht Paiva in OpenAIREN. Giglietto;
N. Giglietto
N. Giglietto in OpenAIREF. Giordano;
F. Giordano
F. Giordano in OpenAIREPaweł Gliwny;
Paweł Gliwny
Paweł Gliwny in OpenAIRENikola Godinović;
R. Grau;Nikola Godinović
Nikola Godinović in OpenAIRED. Green;
D. Green
D. Green in OpenAIREJ. G. Green;
J. G. Green
J. G. Green in OpenAIRED. Hadasch;
D. Hadasch
D. Hadasch in OpenAIREAlexander Hahn;
Alexander Hahn
Alexander Hahn in OpenAIRET. Hassan;
T. Hassan
T. Hassan in OpenAIRELea Heckmann;
Lea Heckmann
Lea Heckmann in OpenAIREJ. Herrera;
J. Herrera
J. Herrera in OpenAIREDario Hrupec;
Dario Hrupec
Dario Hrupec in OpenAIREMoritz Hütten;
Moritz Hütten
Moritz Hütten in OpenAIRERyo Imazawa;
Ryo Imazawa
Ryo Imazawa in OpenAIRETomohiro Inada;
Roman Iotov;Tomohiro Inada
Tomohiro Inada in OpenAIREKazuma Ishio;
Kazuma Ishio
Kazuma Ishio in OpenAIREI. Jiménez Martínez;
I. Jiménez Martínez
I. Jiménez Martínez in OpenAIREJenni Jormanainen;
Jenni Jormanainen
Jenni Jormanainen in OpenAIREDaniel Kerszberg;
Daniel Kerszberg
Daniel Kerszberg in OpenAIREYukiho Kobayashi;
Yukiho Kobayashi
Yukiho Kobayashi in OpenAIREH. Kubo;
H. Kubo
H. Kubo in OpenAIREResumen Estudiamos la emisión de banda ancha de Mrk 501 utilizando observaciones de múltiples longitudes de onda de 2017 a 2020 realizadas con una multitud de instrumentos, que involucran, entre otros, MAGIC, Fermi 's Large Area Telescope (LAT), NuSTAR, Swift, GASP-WEBT y el Owens Valley Radio Observatory. Mrk 501 mostró una actividad de banda ancha extremadamente baja, lo que puede ayudar a desentrañar su emisión de referencia. Sin embargo, se detectan variaciones de flujo significativas en todas las bandas de onda, y las más altas ocurren en rayos X y rayos γ de muy alta energía (VHE). Se mide una correlación significativa (>3 σ ) entre los rayos X y los rayos γ de VHE, lo que respalda los escenarios leptónicos para explicar las partes variables de la emisión, también durante la baja actividad. Esto se confirma aún más cuando ampliamos nuestros datos de 2008 a 2020 e identificamos, por primera vez, correlaciones significativas entre el telescopio de rayos X Swift y Fermi-LAT. Además, encontramos correlaciones entre los rayos γ de alta energía y la radio, con un retraso de la radio de más de 100 días, lo que coloca la zona de emisión de rayos γ aguas arriba de las regiones radiobrillantes en el chorro. Además, Mrk 501 mostró una actividad históricamente baja en rayos X y rayos γ VHE desde mediados de 2017 hasta mediados de 2019 con un flujo VHE estable (>0,2 TeV) del 5% de la emisión de la Nebulosa del Cangrejo. La distribución de energía espectral de banda ancha (sed) de este estado bajo de 2 años de duración, la emisión de referencia potencial de Mrk 501, se puede caracterizar con modelos leptónicos de una zona y con modelos (lepto) -hadrónicos que cumplen con las restricciones de flujo de neutrinos de IceCube. Exploramos la evolución temporal del sed hacia el estado bajo, revelando que la emisión de referencia estable puede atribuirse a un choque permanente, y la emisión variable a un choque adicional en expansión o en movimiento. Résumé Nous étudions l'émission à large bande de Mrk 501 à l'aide d'observations multi-longueurs d'onde de 2017 à 2020 effectuées avec une multitude d'instruments, impliquant, entre autres, MAGIC, le Large Area Telescope (LAT) de Fermi, NuSTAR, Swift, GASP-WEBT et l'Owens Valley Radio Observatory. Mrk 501 a montré une activité à large bande extrêmement faible, ce qui peut aider à démêler son émission de base. Néanmoins, des variations de flux significatives sont détectées à toutes les bandes d'ondes, les plus élevées se produisant aux rayons X et aux rayons γ de très haute énergie (VHE). Une corrélation significative (>3 σ ) entre les rayons X et les rayons γ VHE est mesurée, soutenant des scénarios leptoniques pour expliquer les parties variables de l'émission, également en cas de faible activité. Cela est également confirmé lorsque nous étendons nos données de 2008 à 2020 et identifions, pour la première fois, des corrélations significatives entre le télescope à rayons X Swift et Fermi-LAT. Nous trouvons en outre des corrélations entre les rayons γ de haute énergie et la radio, la radio étant en retard de plus de 100 jours, plaçant la zone d'émission des rayons γ en amont des régions radio-brillantes dans le jet. En outre, Mrk 501 a montré une activité historiquement faible dans les rayons X et les rayons γ VHE de mi-2017 à mi-2019 avec un flux VHE stable (>0,2 TeV) de 5% de l'émission de la nébuleuse du Crabe. La distribution d'énergie spectrale à large bande (SED) de cet état bas de 2 ans de long, l'émission de base potentielle de Mrk 501, peut être caractérisée avec des modèles leptoniques à une zone et avec des modèles (lepto)-hadroniques satisfaisant aux contraintes de flux de neutrinos de IceCube. Nous explorons l'évolution temporelle du SED vers l'état bas, révélant que l'émission de base stable peut être attribuée à un choc permanent et l'émission variable à un choc supplémentaire en expansion ou en déplacement. Abstract We study the broadband emission of Mrk 501 using multiwavelength observations from 2017 to 2020 performed with a multitude of instruments, involving, among others, MAGIC, Fermi's Large Area Telescope (LAT), NuSTAR, Swift, GASP-WEBT, and the Owens Valley Radio Observatory. Mrk 501 showed an extremely low broadband activity, which may help to unravel its baseline emission. Nonetheless, significant flux variations are detected at all wave bands, with the highest occurring at X-rays and very-high-energy (VHE) γ -rays. A significant correlation (>3 σ ) between X-rays and VHE γ -rays is measured, supporting leptonic scenarios to explain the variable parts of the emission, also during low activity. This is further supported when we extend our data from 2008 to 2020, and identify, for the first time, significant correlations between the Swift X-Ray Telescope and Fermi-LAT. We additionally find correlations between high-energy γ -rays and radio, with the radio lagging by more than 100 days, placing the γ -ray emission zone upstream of the radio-bright regions in the jet. Furthermore, Mrk 501 showed a historically low activity in X-rays and VHE γ -rays from mid-2017 to mid-2019 with a stable VHE flux (>0.2 TeV) of 5% the emission of the Crab Nebula. The broadband spectral energy distribution (SED) of this 2 yr long low state, the potential baseline emission of Mrk 501, can be characterized with one-zone leptonic models, and with (lepto)-hadronic models fulfilling neutrino flux constraints from IceCube. We explore the time evolution of the SED toward the low state, revealing that the stable baseline emission may be ascribed to a standing shock, and the variable emission to an additional expanding or traveling shock. ندرس انبعاث النطاق العريض لـ MRK 501 باستخدام ملاحظات متعددة الأطوال الموجية من 2017 إلى 2020 التي يتم إجراؤها باستخدام العديد من الأدوات، والتي تشمل، من بين أمور أخرى، MAGIC، وتلسكوب فيرمي واسع النطاق (LAT)، و NuSTAR، و SWIFT، و GASP - WEBT، ومرصد أوينز فالي الراديوي. أظهر MRK 501 نشاطًا منخفضًا للغاية للنطاق العريض، مما قد يساعد في كشف انبعاثه الأساسي. ومع ذلك، يتم الكشف عن اختلافات كبيرة في التدفق في جميع نطاقات الموجة، مع حدوث أعلىها في الأشعة السينية وأشعة γ عالية الطاقة للغاية (VHE). يتم قياس ارتباط كبير (>3 σ ) بين الأشعة السينية وأشعة VHE γ، مما يدعم السيناريوهات اللبتونية لشرح الأجزاء المتغيرة من الانبعاث، أيضًا أثناء النشاط المنخفض. يتم دعم ذلك بشكل أكبر عندما نوسع بياناتنا من 2008 إلى 2020، ونحدد، لأول مرة، الارتباطات المهمة بين تلسكوب Swift X - Ray و Fermi - LAT. بالإضافة إلى ذلك، نجد ارتباطات بين أشعة جاما عالية الطاقة والراديو، حيث يتخلف الراديو بأكثر من 100 يوم، مما يضع منطقة انبعاث أشعة جاما في المنبع لمناطق الإشعاع الراديوي في الطائرة. علاوة على ذلك، أظهر Mrk 501 نشاطًا منخفضًا تاريخيًا في الأشعة السينية وأشعة VHE γ من منتصف عام 2017 إلى منتصف عام 2019 مع تدفق ثابت لـ VHE (>0.2 TeV) بنسبة 5 ٪ من انبعاث سديم السرطان. يمكن تمييز توزيع الطاقة الطيفية عريضة النطاق (SED) لهذه الحالة المنخفضة لمدة عامين، وهو الانبعاث الأساسي المحتمل لـ Mrk 501، بنماذج لبتونية من منطقة واحدة، وبنماذج (لبتو) - متناظرية تفي بقيود تدفق النيوترينو من IceCube. نستكشف التطور الزمني لـ SED نحو الحالة المنخفضة، مما يكشف عن أن انبعاث خط الأساس المستقر قد يعزى إلى صدمة دائمة، والانبعاث المتغير إلى صدمة إضافية متوسعة أو متنقلة.
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For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Preprint , Other literature type , Journal 2020Embargo end date: 01 Jan 2019 Germany, France, Spain, France, Italy, France, Italy, SpainPublisher:American Astronomical Society Funded by:EC | AstroFIt2, AKA | Intrinsic Very High Energ...EC| AstroFIt2 ,AKA| Intrinsic Very High Energy Gamma-ray Emission of BlazarsAuthors:Matteo Cerruti;
Matteo Cerruti
Matteo Cerruti in OpenAIREF. Leone;
Jose Miguel Miranda; T. Schweizer; +193 AuthorsF. Leone
F. Leone in OpenAIREMatteo Cerruti;
Matteo Cerruti
Matteo Cerruti in OpenAIREF. Leone;
Jose Miguel Miranda; T. Schweizer; Alice Donini;F. Leone
F. Leone in OpenAIRES. Paiano;
Konstancja Satalecka; Kazuma Ishio;S. Paiano
S. Paiano in OpenAIREA. Hahn;
A. Hahn
A. Hahn in OpenAIRESerena Loporchio;
Serena Loporchio
Serena Loporchio in OpenAIREY. Chai;
Francesco Longo; Francesco Longo;Y. Chai
Y. Chai in OpenAIREJ. Rico;
D. Dominis Prester; Ž. Bošnjak;D. Guberman;
D. Guberman
D. Guberman in OpenAIREP. Majumdar;
David H. Green;P. Majumdar
P. Majumdar in OpenAIREP. Temnikov;
John Hoang;P. Temnikov
P. Temnikov in OpenAIREM. V. Fonseca;
M. V. Fonseca
M. V. Fonseca in OpenAIRED. Zarić;
Mitsunari Takahashi;D. Zarić
D. Zarić in OpenAIRED. Strom;
D. Strom
D. Strom in OpenAIREJuan Cortina;
Juan Cortina
Juan Cortina in OpenAIREM. López;
M. López
M. López in OpenAIREOscar Blanch;
Susumu Inoue; Susumu Inoue;Oscar Blanch
Oscar Blanch in OpenAIRECiro Bigongiari;
Ciro Bigongiari
Ciro Bigongiari in OpenAIREValerio Vagelli;
Valerio Vagelli
Valerio Vagelli in OpenAIREG. Ferrara;
G. Ferrara
G. Ferrara in OpenAIRES. Cikota;
S. Cikota
S. Cikota in OpenAIREP. Da Vela;
F. Di Pierro;P. Da Vela
P. Da Vela in OpenAIREC. Arcaro;
C. Arcaro;C. Arcaro
C. Arcaro in OpenAIREK. Noda;
K. Noda; Dorota Sobczyńska;K. Noda
K. Noda in OpenAIRED. Morcuende;
D. Morcuende
D. Morcuende in OpenAIRED. Ninci;
D. Ninci
D. Ninci in OpenAIREB. De Lotto;
G. Vanzo;B. De Lotto
B. De Lotto in OpenAIRER. Paoletti;
R. Paoletti
R. Paoletti in OpenAIRELl. Font;
Ll. Font
Ll. Font in OpenAIREC. Nigro;
C. Nigro
C. Nigro in OpenAIREE. Moretti;
Abelardo Moralejo;E. Moretti
E. Moretti in OpenAIREFabrizio Tavecchio;
Fabrizio Tavecchio
Fabrizio Tavecchio in OpenAIRED. Elsaesser;
D. Elsaesser
D. Elsaesser in OpenAIREDominik Baack;
R. J. García López;Dominik Baack
Dominik Baack in OpenAIREMoritz Hütten;
Moritz Hütten
Moritz Hütten in OpenAIREA. Lamastra;
B. Machado de Oliveira Fraga;A. Lamastra
A. Lamastra in OpenAIREL. Saha;
L. Saha
L. Saha in OpenAIREA. Babić;
A. Babić
A. Babić in OpenAIREJ. Kushida;
J. Kushida; L. Di Venere;J. Kushida
J. Kushida in OpenAIREJuan Abel Barrio;
Juan Abel Barrio
Juan Abel Barrio in OpenAIRED. Miceli;
D. Miceli
D. Miceli in OpenAIREA. De Angelis;
A. De Angelis
A. De Angelis in OpenAIRENarek Sahakyan;
J. Becerra González; M. Strzys;Narek Sahakyan
Narek Sahakyan in OpenAIREM. Vazquez Acosta;
M. Vazquez Acosta
M. Vazquez Acosta in OpenAIRER. Carosi;
Y. Iwamura; Y. Iwamura; K. Mannheim;R. Carosi
R. Carosi in OpenAIRED. Lelas;
D. Lelas
D. Lelas in OpenAIREG. Bonnoli;
Elina Lindfors; David Paneque;G. Bonnoli
G. Bonnoli in OpenAIREK. Nishijima;
K. Nishijima; J. Besenrieder;K. Nishijima
K. Nishijima in OpenAIREE. Do Souto Espiñeira;
E. Do Souto Espiñeira
E. Do Souto Espiñeira in OpenAIREElisa Bernardini;
Kai Phillip Schmidt; Toshiaki Inada; Toshiaki Inada;Elisa Bernardini
Elisa Bernardini in OpenAIREG. Busetto;
G. Busetto
G. Busetto in OpenAIREYusuke Suda;
Yusuke Suda
Yusuke Suda in OpenAIREA. Berti;
A. Berti
A. Berti in OpenAIRESaverio Lombardi;
Saverio Lombardi
Saverio Lombardi in OpenAIREWolfgang Rhode;
Wolfgang Rhode
Wolfgang Rhode in OpenAIREAntonio Stamerra;
Antonio Stamerra
Antonio Stamerra in OpenAIREVitaly Neustroev;
Vitaly Neustroev
Vitaly Neustroev in OpenAIREW. Bednarek;
W. Bednarek
W. Bednarek in OpenAIREP. Munar-Adrover;
P. Munar-Adrover
P. Munar-Adrover in OpenAIREJ. Herrera;
J. Herrera
J. Herrera in OpenAIREA. Somero;
A. Somero
A. Somero in OpenAIRER. López-Coto;
Dario Hrupec;R. López-Coto
R. López-Coto in OpenAIREM. Peresano;
M. Peresano
M. Peresano in OpenAIREF. D'Ammando;
Chiara Righi;F. D'Ammando
F. D'Ammando in OpenAIRED. Fidalgo;
I. Šnidarić;D. Fidalgo
D. Fidalgo in OpenAIREM. Mallamaci;
M. Mallamaci
M. Mallamaci in OpenAIREU. Barres de Almeida;
Marina Manganaro;U. Barres de Almeida
U. Barres de Almeida in OpenAIREC. Maggio;
C. Maggio
C. Maggio in OpenAIREElisa Prandini;
Elisa Prandini;Elisa Prandini
Elisa Prandini in OpenAIREJ. van Scherpenberg;
J. van Scherpenberg
J. van Scherpenberg in OpenAIREE. Colombo;
T. Surić;E. Colombo
E. Colombo in OpenAIRENicola Giglietto;
Nicola Giglietto
Nicola Giglietto in OpenAIREDaniel Kerszberg;
Daniel Kerszberg
Daniel Kerszberg in OpenAIREL. Nogués;
L. Nogués
L. Nogués in OpenAIREM. Gaug;
N. Godinović;
D. Dorner;N. Godinović
N. Godinović in OpenAIREM. Ribó;
Saša Mićanović;M. Minev;
Louis Antonelli;M. Minev
M. Minev in OpenAIRED. Mazin;
D. Mazin;D. Mazin
D. Mazin in OpenAIRED. Hadasch;
D. Hadasch; Jordi Delgado; L. Bellizzi;D. Hadasch
D. Hadasch in OpenAIREV. A. Acciari;
V. A. Acciari
V. A. Acciari in OpenAIREH. Kubo;
H. Kubo; R. Mirzoyan; T. Saito; T. Saito;H. Kubo
H. Kubo in OpenAIREV. Fallah Ramazani;
G. Ceribella;V. Fallah Ramazani
V. Fallah Ramazani in OpenAIREA. Chilingaryan;
S. Gasparyan; Anne M. Lohfink;A. Chilingaryan
A. Chilingaryan in OpenAIREJose Luis Contreras;
Ferdinando Giordano; Carlo Vigorito; Kari Nilsson; Victoria Moreno;Jose Luis Contreras
Jose Luis Contreras in OpenAIREV. Vitale;
V. Vitale
V. Vitale in OpenAIREMassimo Persic;
Massimo Persic; A. Fattorini; L. Maraschi;Massimo Persic
Massimo Persic in OpenAIREStefano Covino;
Stefano Covino
Stefano Covino in OpenAIREFrancesco Tombesi;
Tomislav Terzić;Francesco Tombesi
Francesco Tombesi in OpenAIREM. Mariotti;
P. Peñil;M. Mariotti
M. Mariotti in OpenAIREE. Molina;
E. Molina
E. Molina in OpenAIREM. Will;
M. Will
M. Will in OpenAIREL. Foffano;
M. I. Martínez;L. Foffano
L. Foffano in OpenAIREB. Banerjee;
B. Banerjee
B. Banerjee in OpenAIRES. Ansoldi;
S. Ansoldi; S. Ansoldi;S. Ansoldi
S. Ansoldi in OpenAIREI. Puljak;
I. Puljak
I. Puljak in OpenAIREMichele Doro;
Michele Doro
Michele Doro in OpenAIREI. Vovk;
I. Vovk
I. Vovk in OpenAIREV. D'Elia;
V. D'Elia
V. D'Elia in OpenAIREP. G. Prada Moroni;
Luca Tosti;P. G. Prada Moroni
P. G. Prada Moroni in OpenAIREN. Torres-Albà;
A. Arbet Engels;N. Torres-Albà
N. Torres-Albà in OpenAIREA. Biland;
A. Biland
A. Biland in OpenAIREDavide Depaoli;
Davide Depaoli
Davide Depaoli in OpenAIREM. Delfino;
Shunsuke Sakurai;M. Delfino
M. Delfino in OpenAIREA. Rugliancich;
U. Colin;A. Rugliancich
A. Rugliancich in OpenAIREW. Bhattacharyya;
W. Bhattacharyya
W. Bhattacharyya in OpenAIREC. Fruck;
C. Fruck
C. Fruck in OpenAIREG. Maneva;
G. Maneva
G. Maneva in OpenAIREA. Carosi;
M. Teshima; M. Teshima;A. Carosi
A. Carosi in OpenAIREJulian Sitarek;
Satoshi Fukami; Satoshi Fukami;Julian Sitarek
Julian Sitarek in OpenAIREM. Palatiello;
M. Palatiello
M. Palatiello in OpenAIREA. López-Oramas;
A. López-Oramas
A. López-Oramas in OpenAIREM. Garczarczyk;
Léa Jouvin;M. Garczarczyk
M. Garczarczyk in OpenAIREJ. M. Paredes;
J. M. Paredes
J. M. Paredes in OpenAIRESeiya Nozaki;
Seiya Nozaki;Seiya Nozaki
Seiya Nozaki in OpenAIRES. M. Colak;
S. M. Colak
S. M. Colak in OpenAIREKatsuaki Asano;
Katsuaki Asano;Katsuaki Asano
Katsuaki Asano in OpenAIREM. Makariev;
M. Makariev
M. Makariev in OpenAIREFrancesco Dazzi;
Francesco Dazzi
Francesco Dazzi in OpenAIREarXiv: 1911.06680
handle: 10261/235766 , 11586/348306 , 11365/1120825 , 2108/225453
Abstract Extreme high-frequency-peaked BL Lac objects (EHBLs) are blazars that exhibit extremely energetic synchrotron emission. They also feature nonthermal gamma-ray emission whose peak lies in the very high-energy (VHE, E > 100 GeV) range, and in some sources exceeds 1 TeV: this is the case for hard-TeV EHBLs such as 1ES 0229+200. With the aim of increasing the EHBL population, 10 targets were observed with the MAGIC telescopes from 2010 to 2017, for a total of 265 hr of good-quality data. The data were complemented by coordinated Swift observations. The X-ray data analysis confirms that all but two sources are EHBLs. The sources show only a modest variability and a harder-when-brighter behavior, typical for this class of objects. At VHE gamma-rays, three new sources were detected and a hint of a signal was found for another new source. In each case, the intrinsic spectrum is compatible with the hypothesis of a hard-TeV nature of these EHBLs. The broadband spectral energy distributions (SEDs) of all sources are built and modeled in the framework of a single-zone, purely leptonic model. The VHE gamma-ray-detected sources were also interpreted with a spine–layer model and a proton synchrotron model. The three models provide a good description of the SEDs. However, the resulting parameters differ substantially in the three scenarios, in particular the magnetization parameter. This work presents the first mini catalog of VHE gamma-ray and multiwavelength observations of EHBLs.
Università degli Stu... arrow_drop_down Università degli Studi di Siena: USiena airArticle . 2020Full-Text: http://hdl.handle.net/11365/1120825Data sources: Bielefeld Academic Search Engine (BASE)Archivio della Ricerca - Università di Roma Tor vergataArticle . 2020Full-Text: http://hdl.handle.net/2108/225453Data sources: Bielefeld Academic Search Engine (BASE)The Astrophysical Journal Supplement SeriesArticle . 2020 . Peer-reviewedLicense: IOP Copyright PoliciesData sources: CrossrefRecolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2020 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTAhttps://dx.doi.org/10.48550/ar...Article . 2019License: arXiv Non-Exclusive DistributionData sources: DataciteUniversité Savoie Mont Blanc: HALArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)Università degli Studi di Bari Aldo Moro: CINECA IRISArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 41 citations 41 popularity Top 1% influence Average impulse Top 1% Powered by BIP!
visibility 10visibility views 10 download downloads 5 Powered bymore_vert Università degli Stu... arrow_drop_down Università degli Studi di Siena: USiena airArticle . 2020Full-Text: http://hdl.handle.net/11365/1120825Data sources: Bielefeld Academic Search Engine (BASE)Archivio della Ricerca - Università di Roma Tor vergataArticle . 2020Full-Text: http://hdl.handle.net/2108/225453Data sources: Bielefeld Academic Search Engine (BASE)The Astrophysical Journal Supplement SeriesArticle . 2020 . Peer-reviewedLicense: IOP Copyright PoliciesData sources: CrossrefRecolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2020 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTAhttps://dx.doi.org/10.48550/ar...Article . 2019License: arXiv Non-Exclusive DistributionData sources: DataciteUniversité Savoie Mont Blanc: HALArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)Università degli Studi di Bari Aldo Moro: CINECA IRISArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.3847/1538-4365/ab5b98&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Preprint , Journal 2020Embargo end date: 01 Jan 2020 Switzerland, Italy, SpainPublisher:Oxford University Press (OUP) Funded by:NSF | Release and Analysis of t..., NSF | The Galactic Ring Survey, NSF | Astronomy Research at the... +5 projectsNSF| Release and Analysis of the Galactic Ring Survey ,NSF| The Galactic Ring Survey ,NSF| Astronomy Research at the Five College Radio Astronomy Observatory ,SGOV| - ,NSF| Astronomy Research at the Five College Radio Astronomy Observatory ,[no funder available] ,AKA| Intrinsic Very High Energy Gamma-ray Emission of Blazars ,NSF| The Milky WayAuthors:Juan Cortina;
L. Di Venere;Juan Cortina
Juan Cortina in OpenAIREJuan Abel Barrio;
Juan Abel Barrio
Juan Abel Barrio in OpenAIRESidika Merve Colak;
+190 AuthorsSidika Merve Colak
Sidika Merve Colak in OpenAIREJuan Cortina;
L. Di Venere;Juan Cortina
Juan Cortina in OpenAIREJuan Abel Barrio;
Juan Abel Barrio
Juan Abel Barrio in OpenAIRESidika Merve Colak;
Sidika Merve Colak
Sidika Merve Colak in OpenAIREJ. M. Paredes;
Yating Chai; Lovro Pavletić; Manuela Mallamaci;J. M. Paredes
J. M. Paredes in OpenAIREA. De Angelis;
A. De Angelis
A. De Angelis in OpenAIREJ. Otero-Santos;
J. Otero-Santos;J. Otero-Santos
J. Otero-Santos in OpenAIREChristian Fruck;
E. Colombo; Ll. Font; Nikola Godinovic; R. Mirzoyan; T. Schweizer; D. Zarić; K. Noda; Chiara Righi; Elina Lindfors;Christian Fruck
Christian Fruck in OpenAIREManuel Delfino;
B. De Lotto;Manuel Delfino
Manuel Delfino in OpenAIREVitaly Neustroev;
Camilla Maggio; Karl Mannheim;Vitaly Neustroev
Vitaly Neustroev in OpenAIRESerena Loporchio;
Luca Tosti;Serena Loporchio
Serena Loporchio in OpenAIREMoritz Hütten;
B. Machado de Oliveira Fraga; Kai Phillip Schmidt;Moritz Hütten
Moritz Hütten in OpenAIREJ. van Scherpenberg;
J. van Scherpenberg
J. van Scherpenberg in OpenAIRELuca Foffano;
Luca Foffano
Luca Foffano in OpenAIREM. Minev;
Adrian Biland; S. Mićanović; Sargis Gasparyan;M. Minev
M. Minev in OpenAIREMarc Ribó;
M. Garczarczyk;Marc Ribó
Marc Ribó in OpenAIRETjark Miener;
Tjark Miener
Tjark Miener in OpenAIREL. A. Antonelli;
Alexander Hahn; Gaia Vanzo; Gaia Vanzo; Abelardo Moralejo;L. A. Antonelli
L. A. Antonelli in OpenAIREMarie Karjalainen;
Ana Babić; P. Munar-Adrover;Marie Karjalainen
Marie Karjalainen in OpenAIRED. Hadasch;
Rodolfo Carosi; N. Giglietto; Pratik Majumdar; N. Torres-Albà; Yoshiki Ohtani;D. Hadasch
D. Hadasch in OpenAIREChaitanya Priyadarshi;
Chaitanya Priyadarshi
Chaitanya Priyadarshi in OpenAIRELab Saha;
Lab Saha
Lab Saha in OpenAIRED. Miceli;
Tihomir Surić; F. Di Pierro; Y. Kobayashi; D. Strom; C. Perennes; J. Becerra González; J. Becerra González;D. Miceli
D. Miceli in OpenAIRED. Elsaesser;
D. Elsaesser
D. Elsaesser in OpenAIREC. Delgado Mendez;
A. Rugliancich; Ashot Chilingarian; Konstancja Satalecka; Kazuma Ishio; Martin Makariev; M. A. Lopez;C. Delgado Mendez
C. Delgado Mendez in OpenAIREE. Do Souto Espiñeira;
E. Do Souto Espiñeira
E. Do Souto Espiñeira in OpenAIREElisa Bernardini;
Toshiaki Inada;Elisa Bernardini
Elisa Bernardini in OpenAIREM. Vazquez Acosta;
M. Vazquez Acosta;M. Vazquez Acosta
M. Vazquez Acosta in OpenAIRES. Ventura;
T. Di Girolamo;S. Ventura
S. Ventura in OpenAIREWolfgang Rhode;
Wolfgang Rhode
Wolfgang Rhode in OpenAIRESimone Mender;
Ž. Bošnjak; John Hoang; Mitsunari Takahashi;Simone Mender
Simone Mender in OpenAIRELea Heckmann;
Lea Heckmann
Lea Heckmann in OpenAIREU. Barres de Almeida;
U. Barres de Almeida
U. Barres de Almeida in OpenAIREG. Ferrara;
G. Ferrara
G. Ferrara in OpenAIREGiacomo D'Amico;
Giacomo D'Amico
Giacomo D'Amico in OpenAIREMichele Doro;
Michele Doro
Michele Doro in OpenAIREP. Da Vela;
V. D'Elia; Sanae Inoue; J. Herrera; J. Herrera;P. Da Vela
P. Da Vela in OpenAIREStefano Covino;
Bernd Schleicher; Tomislav Terzić;Stefano Covino
Stefano Covino in OpenAIREMarina Manganaro;
Damir Lelas;Marina Manganaro
Marina Manganaro in OpenAIREPablo Peñil;
L. Maraschi; M. Strzys;Pablo Peñil
Pablo Peñil in OpenAIREF. Leone;
F. Leone
F. Leone in OpenAIRESaverio Lombardi;
Ferdinando Giordano; Alice Donini;Saverio Lombardi
Saverio Lombardi in OpenAIREElisa Prandini;
Francesco Longo; Tomoki Saito; D. Dominis Prester;Elisa Prandini
Elisa Prandini in OpenAIREM. Gaug;
David Paneque;Oscar Blanch;
Carlo Vigorito; Kari Nilsson; Wlodek Bednarek; Wrijupan Bhattacharyya; Victor A. Acciari;Oscar Blanch
Oscar Blanch in OpenAIRETomohiko Oka;
V. Vitale; E. Moretti;Tomohiko Oka
Tomohiko Oka in OpenAIREMassimo Persic;
R. J. García López; R. J. García López; Mosè Mariotti; Stefano Ansoldi; Yuki Iwamura; V. Fallah Ramazani; Masahiro Teshima; P. G. Prada Moroni;Massimo Persic
Massimo Persic in OpenAIREGiacomo Bonnoli;
M. V. Fonseca;Giacomo Bonnoli
Giacomo Bonnoli in OpenAIREY. Suda;
Daniel Morcuende;
Ivica Puljak;Daniel Morcuende
Daniel Morcuende in OpenAIREVassil Verguilov;
Vassil Verguilov
Vassil Verguilov in OpenAIREJose Luis Contreras;
Jose Luis Contreras
Jose Luis Contreras in OpenAIREAlessia Spolon;
Alessia Spolon
Alessia Spolon in OpenAIREG. Busetto;
Martin Will;G. Busetto
G. Busetto in OpenAIREJulian Sitarek;
Satoshi Fukami; M. Palatiello; Andrés Baquero;Julian Sitarek
Julian Sitarek in OpenAIREJ. Rico;
E. Molina;
K. Nishijima;E. Molina
E. Molina in OpenAIREAntonio Stamerra;
Antonio Stamerra
Antonio Stamerra in OpenAIREDaniel Kerszberg;
Lorenzo Bellizzi; Alicia Fattorini; D. Ninci;Daniel Kerszberg
Daniel Kerszberg in OpenAIRES. Nozaki;
Stefano Truzzi;S. Nozaki
S. Nozaki in OpenAIRENarek Sahakyan;
G. Maneva;Narek Sahakyan
Narek Sahakyan in OpenAIREJordi Delgado;
Giovanni Ceribella; R. López-Coto; A. Arbet Engels; Hidetoshi Kubo;Jordi Delgado
Jordi Delgado in OpenAIREMatteo Cerruti;
Matteo Cerruti
Matteo Cerruti in OpenAIREJ. Kushida;
J. Kushida
J. Kushida in OpenAIREStefan Cikota;
Stefan Cikota
Stefan Cikota in OpenAIREJose Miguel Miranda;
Jose Miguel Miranda
Jose Miguel Miranda in OpenAIREA. López-Oramas;
A. López-Oramas;A. López-Oramas
A. López-Oramas in OpenAIREP. Temnikov;
Katsuaki Asano; Francesco Dazzi; Léa Jouvin; Daniela Dorner;P. Temnikov
P. Temnikov in OpenAIREPawel Gliwny;
Pawel Gliwny
Pawel Gliwny in OpenAIREC. Nigro;
I. Snidaric; Riccardo Paoletti;C. Nigro
C. Nigro in OpenAIREDaniel Mazin;
Dario Hrupec; M. I. Martínez; Victoria Moreno;Daniel Mazin
Daniel Mazin in OpenAIREAlessandra Lamastra;
Alessandra Lamastra
Alessandra Lamastra in OpenAIRECiro Bigongiari;
Dorota Sobczyńska; Jürgen Besenrieder;Ciro Bigongiari
Ciro Bigongiari in OpenAIREFabrizio Tavecchio;
Maria-Isabel Bernardos;Fabrizio Tavecchio
Fabrizio Tavecchio in OpenAIRED. Depaoli;
D. Depaoli
D. Depaoli in OpenAIREDominik Baack;
I. Vovk; Shunsuke Sakurai; B. Banerjee; A. Berti; David A. Green; Y. Kajiwara;Dominik Baack
Dominik Baack in OpenAIREdoi: 10.1093/mnras/staa2135 , 10.48550/arxiv.2007.09321 , 10.3929/ethz-b-000448067 , 10.3204/pubdb-2020-04788
arXiv: 2007.09321
handle: 10261/237375 , 11586/348248 , 11365/1120843
doi: 10.1093/mnras/staa2135 , 10.48550/arxiv.2007.09321 , 10.3929/ethz-b-000448067 , 10.3204/pubdb-2020-04788
arXiv: 2007.09321
handle: 10261/237375 , 11586/348248 , 11365/1120843
ABSTRACT We investigate the physical nature and origin of the gamma-ray emission from the extended source HESS J1841−055 observed at TeV and GeV energies. We observed HESS J1841−055 at TeV energies for a total effective time of 43 h with the MAGIC telescopes, in 2012 and 2013. Additionally, we analysed the GeV counterpart making use of about 10 yr of Fermi-LAT data. Using both Fermi-LAT and MAGIC, we study both the spectral and energy-dependent morphology of the source for almost four decades of energy. The origin of the gamma-ray emission from this region is investigated using multiwaveband information on sources present in this region, suggested to be associated with this unidentified gamma-ray source. We find that the extended emission at GeV–TeV energies is best described by more than one source model. We also perform the first energy-dependent analysis of the HESS J1841−055 region at GeV–TeV. We find that the emission at lower energies comes from a diffuse or extended component, while the major contribution of gamma rays above 1 TeV arises from the southern part of the source. Moreover, we find that a significant curvature is present in the combined observed spectrum of MAGIC and Fermi-LAT. The first multiwavelength spectral energy distribution of this unidentified source shows that the emission at GeV–TeV energies can be well explained with both leptonic and hadronic models. For the leptonic scenario, bremsstrahlung is the dominant emission compared to inverse Compton. On the other hand, for the hadronic model, gamma-ray resulting from the decay of neutral pions (π0) can explain the observed spectrum. The presence of dense molecular clouds overlapping with HESS J1841−055 makes both bremsstrahlung and π0-decay processes the dominant emission mechanisms for the source.
Monthly Notices of t... arrow_drop_down Monthly Notices of the Royal Astronomical SocietyArticle . 2020 . Peer-reviewedLicense: OUP Standard Publication ReuseData sources: CrossrefRecolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2020 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2020 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTAUniversità degli Studi di Siena: USiena airArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2020License: arXiv Non-Exclusive DistributionData sources: DataciteUniversità degli Studi di Bari Aldo Moro: CINECA IRISArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1093/mnras/staa2135&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen hybrid 5 citations 5 popularity Top 10% influence Average impulse Average Powered by BIP!
visibility 15visibility views 15 download downloads 27 Powered bymore_vert Monthly Notices of t... arrow_drop_down Monthly Notices of the Royal Astronomical SocietyArticle . 2020 . Peer-reviewedLicense: OUP Standard Publication ReuseData sources: CrossrefRecolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2020 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2020 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTAUniversità degli Studi di Siena: USiena airArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2020License: arXiv Non-Exclusive DistributionData sources: DataciteUniversità degli Studi di Bari Aldo Moro: CINECA IRISArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.eu