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description Publicationkeyboard_double_arrow_right Article , Research , Preprint , Journal , Other literature type 2020Embargo end date: 01 Jan 2020 France, Poland, Spain, Ireland, Ireland, Germany, Australia, Australia, Netherlands, Germany, Germany, FrancePublisher:EDP Sciences Publicly fundedA. Reimer; Francois Brun; Sebastian Panny; J. Dyks; M. de Naurois; F. Niederwanger; Heike Prokoph; V. Barbosa Martins; C. Steppa; Denys Malyshev; Christo Venter; Christoph Deil; Mischa Breuhaus; T. Chand; M. Renaud; Helene Sol; A. Nayerhoda; Gianluca Giavitto; Jacco Vink; Jason John Watson; V. Sahakian; R. Simoni; B. Bi; Jim Davies; E. de Ona Wilhelmi; Sylvia Zhu; Yvonne Becherini; F. Ait Benkhali; M. Mohamed; Stefan Wagner; R. Konno; A.A. Zdziarski; D. A. Prokhorov; G. Fichet de Clairfontaine; D. Tiziani; M. Barnard; A. Zech; Tom Armstrong; D. Jankowsky; A. Marcowith; B. Peyaud; L. Dirson; M. Büchele; M. Seglar-Arroyo; V. Joshi; L. Olivera-Nieto; L. Rinchiuso; P.J. Meintjes; F. Eichhorn; Lei Sun; Andrea Santangelo; S. Raab; F. Werner; J. Zorn; J. Devin; Łukasz Stawarz; R. J. White; S. Chandra; C. Trichard; A.M. Taylor; V. Poireau; J. Bolmont; E. O. Angüner; Hester Schutte; K. Kosack; S. Gabici; P. Vincent; Alessandro Montanari; I. Lypova; Halim Ashkar; C. Levy; Carlo Romoli; S. Fegan; M. Böttcher; U. Katz; Dmitriy Kostunin; K. Egberts; L. Giunti; L. Giunti; Thomas Murach; Jacek Niemiec; Włodek Kluźniak; Samuel Zouari; K. Katarzyński; A. Priyana Noel; Stefan Ohm; Zorawar Wadiasingh; Axel Donath; Alison Mitchell; Alison Mitchell; Sabrina Einecke; A. Wierzcholska; Y.A. Gallant; V. Marandon; Armelle Jardin-Blicq; I. Jung-Richardt; R. Moderski; J.-P. Lenain; Tim Holch; S. Schwemmer; E. Ruiz-Velasco; J. Veh; B. Rudak; Tomasz Bulik; Marek Jamrozy; M. Bryan; A. Fiasson; G. Emery; S. Caroff; K. Shiningayamwe; Heinrich J. Völk; V. Baghmanyan; C. van Rensburg; T. Takahashi; G. Lamanna; M.-H. Grondin; G. Peron; I.D. Davids; C. Stegmann; H. Ndiyavala; Anna Barnacka; M. Zacharias; Dmitry Khangulyan; Connor Duffy; Yu Wun Wong; R. D. Parsons; A. Ziegler; H. Abdalla; M. Lemoine-Goumard; M. Spir-Jacob; Regis Terrier; M.A. Kastendieck; Jhilik Majumdar; P. Bordas; A. Lemière; D. Glawion; Olaf Reimer; D. Huber; R. Adam; Michael Punch; G. Hermann; Marchegiani; Davit Zargaryan; Atreyee Sinha; G. Pühlhofer; J. Damascene Mbarubucyeye; J. Hahn; A. Djannati-Ataï; Jacques Muller; Dieter Horns; L. Oakes; M. Tsirou; T. Vuillaume; B. van Soelen; T. Bylund; A. W. Chen; L. Mohrmann; J.-P. Ernenwein; C. van Eldik; Kirsty Feijen; Mohanraj Senniappan; Manuel Meyer; P. T. O'Brien; I. Oya; R. Steenkamp; B. Khélifi; Celine Armand; M. Scalici; E. Kasai; C. Hoischen; G. Fontaine; D. A. Sanchez; M. Panter; Jonathan Mackey; Gavin Rowell; Jim Hinton; Garret Cotter; Werner Hofmann; Michael Backes; Michael Backes; A.S. Seyffert; Sabrina Casanova; D. Gottschall; M. de Bony de Lavergne; M. Tluczykont; Yasunobu Uchiyama; N. Shafi; E. Moulin; M. Haupt; Nu. Komin; G. Maurin; Frank M. Rieger; Natalia Żywucka; K. Nakashima; R. Marx; R. Marx; S. Sailer; S. Steinmassl; M. Ostrowski; A. Yusafzai;The unidentified very-high-energy (VHE;E> 0.1 TeV)γ-ray source, HESS J1826−130, was discovered with the High Energy Stereoscopic System (HESS) in the Galactic plane. The analysis of 215 h of HESS data has revealed a steadyγ-ray flux from HESS J1826−130, which appears extended with a half-width of 0.21° ± 0.02stat° ± 0.05sys°. The source spectrum is best fit with either a power-law function with a spectral index Γ = 1.78 ± 0.10stat± 0.20sysand an exponential cut-off at 15.2−3.2+5.5TeV, or a broken power-law with Γ1= 1.96 ± 0.06stat± 0.20sys, Γ2= 3.59 ± 0.69stat± 0.20sysfor energies below and aboveEbr= 11.2 ± 2.7 TeV, respectively. The VHE flux from HESS J1826−130 is contaminated by the extended emission of the bright, nearby pulsar wind nebula, HESS J1825−137, particularly at the low end of the energy spectrum. Leptonic scenarios for the origin of HESS J1826−130 VHE emission related to PSR J1826−1256 are confronted by our spectral and morphological analysis. In a hadronic framework, taking into account the properties of dense gas regions surrounding HESS J1826−130, the source spectrum would imply an astrophysical object capable of accelerating the parent particle population up to ≳200 TeV. Our results are also discussed in a multiwavelength context, accounting for both the presence of nearby supernova remnants, molecular clouds, and counterparts detected in radio, X-rays, and TeV energies.
DIAS Access to Insti... arrow_drop_down DIAS Access to Institutional RepositoryArticle . 2020 . Peer-reviewedData sources: DIAS Access to Institutional RepositoryUniversité Savoie Mont Blanc: HALArticle . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)HAL-IN2P3 (Institut national de physique nucléaire et de physique des particules)Article . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Recolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTAAstronomy and AstrophysicsArticle . 2020License: CC BYData sources: Universiteit van Amsterdam Digital Academic RepositoryUniversiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2020Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2020License: arXiv Non-Exclusive DistributionData sources: DataciteThe University of Adelaide: Digital LibraryArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)Eberhard Karls University Tübingen: Publication SystemArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)Dublin Institute for Advanced Studies: DIAS Institutional RepositoryArticle . 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.euAccess RoutesGreen hybrid 15 citations 15 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
visibility 31visibility views 31 download downloads 32 Powered bymore_vert DIAS Access to Insti... arrow_drop_down DIAS Access to Institutional RepositoryArticle . 2020 . Peer-reviewedData sources: DIAS Access to Institutional RepositoryUniversité Savoie Mont Blanc: HALArticle . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)HAL-IN2P3 (Institut national de physique nucléaire et de physique des particules)Article . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Recolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTAAstronomy and AstrophysicsArticle . 2020License: CC BYData sources: Universiteit van Amsterdam Digital Academic RepositoryUniversiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2020Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2020License: arXiv Non-Exclusive DistributionData sources: DataciteThe University of Adelaide: Digital LibraryArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)Eberhard Karls University Tübingen: Publication SystemArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)Dublin Institute for Advanced Studies: DIAS Institutional RepositoryArticle . 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 Article , Other literature type , Preprint 2022Embargo end date: 01 Jan 2021 Netherlands, GermanyPublisher:American Astronomical Society A. Albert; R. Alfaro; C. Álvarez; J. D. Álvarez; José Roberto Ángeles Camacho; G. Trinchero; D. Avila Rojas; H. A. Ayala Solares; Rishi Babu; E. Belmont‐Moreno; C. Brisbois; K. S. Caballero‐Mora; T. Capistrán; A. Carramiñana; S. Casanova; U. Cotti; J. Cotzomi; Sara Coutiño de León; Eduardo de la Fuente; C. de León; R. Díaz Hernández; B. L. Dingus; M. A. DuVernois; Mora Durocher; J. C. Díaz–Vélez; Kristi Engel; C. Espinoza; Kwok Lung Fan; Ke Fang; Fernández Alonso; N. Fraija; D. Ramírez García; J. A. García-González; F. Garfias; Gwenael Giacinti; Hazal Goksu; M. M. González; J. A. Goodman; J. Patrick Harding; J. A. Hinton; B. Hona; Dezhi Huang; F. Hueyotl‐Zahuantitla; P. Hüntemeyer; A. Iriarte; A. Jardin-Blicq; Vikas Joshi; S. Kaufmann; D. Kieda; William H. Lee; J. Lee; H. León Vargas; J. T. Linnemann; A. L. Longinotti; G. Luis-Raya; K. Malone; V. Marandon; O. Martı́nez; J. Martínez-Castro; John A. Matthews; P. Miranda-Romagnoli; J. A. Morales-Soto; E. Moreno; M. Mostafá; A. Nayerhoda; Lukas Nellen; M. Newbold; Mehr Nisa; R. Noriega-Papaqui; Laura Olivera-Nieto; N. Omodei; Alison Peisker; Yunior Pérez Araujo; E. G. Pérez‐Pérez; Chang Dong Rho; D. Rosa‐González; H. Salazar; F. Salesa Greus; A. Sandoval; M. Schneider; Harm Schoorlemmer; José Serna-Franco; A. J. Smith; Youngwan Son; R. W. Springer; O. Tibolla; K. Tollefson; I. Torres; R. Torres-Escobedo; Rhiannon M. Turner; F. Ureña-Mena; L. Villaseñor; X. Wang; Cécile Caillol; E. Willox; A. Zepeda; H. Zhou; M. Breuhaus; H. Li; Haocheng Zhang;Abstract We report TeV gamma-ray observations of the ultra-high-energy source MGRO J1908+06 using data from the High Altitude Water Cherenkov Observatory. This source is one of the highest-energy known gamma-ray sources, with emission extending past 200 TeV. Modeling suggests that the bulk of the TeV gamma-ray emission is leptonic in nature, driven by the energetic radio-faint pulsar PSR J1907+0602. Depending on what assumptions are included in the model, a hadronic component may also be allowed. Using the results of the modeling, we discuss implications for detection prospects by multi-messenger campaigns.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 11 citations 11 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
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For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Preprint 2022Embargo end date: 01 Jan 2022 Australia, Poland, France, Australia, Sweden, Netherlands, Germany, GermanyPublisher:EDP Sciences Funded by:EC | SHARPEC| SHARPCollaboration, H. E. S. S.; Aharonian, F.; Benkhali, F. Ait; Anguner, E. O.; Ashkar, H.; Backes, M.; Martins, V. Barbosa; Batzofin, R.; Becherini, Y.; Berge, D.; Bernloehr, K.; Boettcher, M.; Boisson, C.; Bolmont, J.; de Lavergne, M. de Bony; Breuhaus, M.; Brose, R.; Brun, F.; Bulik, T.; Bylund, T.; Cangemi, F.; Caroff, S.; Casanova, S.; Cerruti, M.; Chand, T.; Chen, A.; Chibueze, O.; Cotter, G.; Cristofari, P.; Mbarubucyeye, J. Damascene; Devin, J.; Djannati-Atai, A.; Dmytriiev, A.; Egberts, K.; Einecke, S.; Ernenwein, J. -P.; Feijen, K.; Fiasson, A.; de Clairfontaine, G. Fichet; Fontaine, G.; Funk, S.; Gabici, S.; Gallant, Y. A.; Ghafourizadeh, S.; Giavitto, G.; Giunti, L.; Glawion, D.; Glicenstein, J. F.; Grondin, M. -H.; Hoerbe, M.; Hofmann, W.; Holch, T. L.; Holler, M.; Horns, D.; Huang, Zhiqiu; Jamrozy, M.; Joshi, V.; Jung-Richardt, I.; Kasai, E.; Katarzynski, K.; Katz, U.; Khelifi, B.; Kluzniak, W.; Komin, Nu.; Kosack, K.; Kostunin, D.; Lemiere, A.; Lemoine-Goumard, M.; Lenain, J. -P.; Leuschner, F.; Lohse, T.; Luashvili, A.; Lypova, I.; Mackey, J.; Malyshev, D.; Malyshev, D.; Marandon, V.; Marchegiani, P.; Marcowith, A.; Marti-Devesa, G.; Marx, R.; Maurin, G.; Meintjes, P. J.; Meyer, M.; Mitchell, A.; Moderski, R.; Mohrmann, L.; Montanari, A.; Moulin, E.; Muller, J.; Nakashima, K.; de Naurois, M.; Nayerhoda, A.; Niemiec, J.; Noel, A. Priyana; O'Brien, P.; Ohm, S.; Olivera-Nieto, L.; Wilhelmi, E. de Ona; Ostrowski, M.; Panny, S.; Panter, M.; Parsons, R. D.; Peron, G.; Poireau, V.; Prokhorov, D. A.; Puehlhofer, G.; Punch, M.; Quirrenbach, A.; Reichherzer, P.; Reimer, A.; Reimer, O.; Renaud, M.; Reville, B.; Rieger, F.; Rowell, G.; Rudak, B.; Ricarte, H. Rueda; Sahakian, V.; Sailer, S.; Salzmann, H.; Sanchez, D. A.; Santangelo, A.; Sasaki, M.; Schafer, J.; Schussler, F.; Schutte, H. M.; Schwanke, U.; Shapopi, J. N. S.; Simoni, R.; Sol, H.; Specovius, A.; Spencer, S.; Stawarz, L.; Steinmassl, S.; Steppa, C.; Sushch, I.; Takahashi, T.; Tanaka, T.; Taylor, A. M.; Terrier, R.; Tsirou, M.; Uchiyama, Y.; Unbehaun, T.; van Eldik, C.; Veh, J.; Vink, J.; Voelk, H. J.; Wagner, S. J.; Werner, F.; White, R.; Wierzcholska, A.; Wong, Yu Wun; Yusafzai, A.; Zacharias, M.; Zargaryan, D.; Zdziarski, A. A.; Zech, A.; Zhu, S. J.; Zouari, S.; Zywucka, N.;Observations with imaging atmospheric Cherenkov telescopes (IACTs) have enhanced our knowledge of nearby supernova (SN) remnants with ages younger than 500 yr by establishing Cassiopeia A and the remnant of Tycho’s SN as very-high-energy (VHE) γ-ray sources. The remnant of Kepler’s SN, which is the product of the most recent naked-eye SN in our Galaxy, is comparable in age to the other two, but is significantly more distant. If the γ-ray luminosities of the remnants of Tycho’s and Kepler’s SNe are similar, then the latter is expected to be one of the faintest γ-ray sources within reach of the current generation IACT arrays. Here we report evidence at a statistical level of 4.6σ for a VHE signal from the remnant of Kepler’s SN based on deep observations by the High Energy Stereoscopic System (H.E.S.S.) with an exposure of 152 h. The measured integral flux above an energy of 226 GeV is ∼0.3% of the flux of the Crab Nebula. The spectral energy distribution (SED) reveals a γ-ray emitting component connecting the VHE emission observed with H.E.S.S. to the emission observed at GeV energies with Fermi-LAT. The overall SED is similar to that of the remnant of Tycho’s SN, possibly indicating the same nonthermal emission processes acting in both these young remnants of thermonuclear SNe.
Astronomy and Astrop... arrow_drop_down Linnaeus University Kalmar Växjö: Publications (DiVA)Article . 2022Data sources: Bielefeld Academic Search Engine (BASE)Université Savoie Mont Blanc: HALArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)The University of Adelaide: Digital LibraryArticle . 2022License: CC BYFull-Text: https://hdl.handle.net/2440/136669Data sources: Bielefeld Academic Search Engine (BASE)École Polytechnique, Université Paris-Saclay: HALArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)HAL-IN2P3 (Institut national de physique nucléaire et de physique des particules)Article . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Astronomy and AstrophysicsArticle . 2022License: CC BYData sources: Universiteit van Amsterdam Digital Academic RepositoryDigitala Vetenskapliga Arkivet - Academic Archive On-lineArticle . 2022 . Peer-reviewedUniversiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2022Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2022License: arXiv Non-Exclusive DistributionData sources: DatacitePublikationsserver der Universität PotsdamArticle . 2022License: CC BYData sources: Publikationsserver der Universität PotsdamAstronomy and AstrophysicsArticle . 2022 . Peer-reviewedData sources: European Union Open Data PortalEberhard Karls University Tübingen: Publication SystemArticle . 2022Data 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.eu5 citations 5 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert Astronomy and Astrop... arrow_drop_down Linnaeus University Kalmar Växjö: Publications (DiVA)Article . 2022Data sources: Bielefeld Academic Search Engine (BASE)Université Savoie Mont Blanc: HALArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)The University of Adelaide: Digital LibraryArticle . 2022License: CC BYFull-Text: https://hdl.handle.net/2440/136669Data sources: Bielefeld Academic Search Engine (BASE)École Polytechnique, Université Paris-Saclay: HALArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)HAL-IN2P3 (Institut national de physique nucléaire et de physique des particules)Article . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Astronomy and AstrophysicsArticle . 2022License: CC BYData sources: Universiteit van Amsterdam Digital Academic RepositoryDigitala Vetenskapliga Arkivet - Academic Archive On-lineArticle . 2022 . Peer-reviewedUniversiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2022Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2022License: arXiv Non-Exclusive DistributionData sources: DatacitePublikationsserver der Universität PotsdamArticle . 2022License: CC BYData sources: Publikationsserver der Universität PotsdamAstronomy and AstrophysicsArticle . 2022 . Peer-reviewedData sources: European Union Open Data PortalEberhard Karls University Tübingen: Publication SystemArticle . 2022Data 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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description Publicationkeyboard_double_arrow_right Article , Research , Preprint , Journal , Other literature type 2020Embargo end date: 01 Jan 2020 France, Poland, Spain, Ireland, Ireland, Germany, Australia, Australia, Netherlands, Germany, Germany, FrancePublisher:EDP Sciences Publicly fundedA. Reimer; Francois Brun; Sebastian Panny; J. Dyks; M. de Naurois; F. Niederwanger; Heike Prokoph; V. Barbosa Martins; C. Steppa; Denys Malyshev; Christo Venter; Christoph Deil; Mischa Breuhaus; T. Chand; M. Renaud; Helene Sol; A. Nayerhoda; Gianluca Giavitto; Jacco Vink; Jason John Watson; V. Sahakian; R. Simoni; B. Bi; Jim Davies; E. de Ona Wilhelmi; Sylvia Zhu; Yvonne Becherini; F. Ait Benkhali; M. Mohamed; Stefan Wagner; R. Konno; A.A. Zdziarski; D. A. Prokhorov; G. Fichet de Clairfontaine; D. Tiziani; M. Barnard; A. Zech; Tom Armstrong; D. Jankowsky; A. Marcowith; B. Peyaud; L. Dirson; M. Büchele; M. Seglar-Arroyo; V. Joshi; L. Olivera-Nieto; L. Rinchiuso; P.J. Meintjes; F. Eichhorn; Lei Sun; Andrea Santangelo; S. Raab; F. Werner; J. Zorn; J. Devin; Łukasz Stawarz; R. J. White; S. Chandra; C. Trichard; A.M. Taylor; V. Poireau; J. Bolmont; E. O. Angüner; Hester Schutte; K. Kosack; S. Gabici; P. Vincent; Alessandro Montanari; I. Lypova; Halim Ashkar; C. Levy; Carlo Romoli; S. Fegan; M. Böttcher; U. Katz; Dmitriy Kostunin; K. Egberts; L. Giunti; L. Giunti; Thomas Murach; Jacek Niemiec; Włodek Kluźniak; Samuel Zouari; K. Katarzyński; A. Priyana Noel; Stefan Ohm; Zorawar Wadiasingh; Axel Donath; Alison Mitchell; Alison Mitchell; Sabrina Einecke; A. Wierzcholska; Y.A. Gallant; V. Marandon; Armelle Jardin-Blicq; I. Jung-Richardt; R. Moderski; J.-P. Lenain; Tim Holch; S. Schwemmer; E. Ruiz-Velasco; J. Veh; B. Rudak; Tomasz Bulik; Marek Jamrozy; M. Bryan; A. Fiasson; G. Emery; S. Caroff; K. Shiningayamwe; Heinrich J. Völk; V. Baghmanyan; C. van Rensburg; T. Takahashi; G. Lamanna; M.-H. Grondin; G. Peron; I.D. Davids; C. Stegmann; H. Ndiyavala; Anna Barnacka; M. Zacharias; Dmitry Khangulyan; Connor Duffy; Yu Wun Wong; R. D. Parsons; A. Ziegler; H. Abdalla; M. Lemoine-Goumard; M. Spir-Jacob; Regis Terrier; M.A. Kastendieck; Jhilik Majumdar; P. Bordas; A. Lemière; D. Glawion; Olaf Reimer; D. Huber; R. Adam; Michael Punch; G. Hermann; Marchegiani; Davit Zargaryan; Atreyee Sinha; G. Pühlhofer; J. Damascene Mbarubucyeye; J. Hahn; A. Djannati-Ataï; Jacques Muller; Dieter Horns; L. Oakes; M. Tsirou; T. Vuillaume; B. van Soelen; T. Bylund; A. W. Chen; L. Mohrmann; J.-P. Ernenwein; C. van Eldik; Kirsty Feijen; Mohanraj Senniappan; Manuel Meyer; P. T. O'Brien; I. Oya; R. Steenkamp; B. Khélifi; Celine Armand; M. Scalici; E. Kasai; C. Hoischen; G. Fontaine; D. A. Sanchez; M. Panter; Jonathan Mackey; Gavin Rowell; Jim Hinton; Garret Cotter; Werner Hofmann; Michael Backes; Michael Backes; A.S. Seyffert; Sabrina Casanova; D. Gottschall; M. de Bony de Lavergne; M. Tluczykont; Yasunobu Uchiyama; N. Shafi; E. Moulin; M. Haupt; Nu. Komin; G. Maurin; Frank M. Rieger; Natalia Żywucka; K. Nakashima; R. Marx; R. Marx; S. Sailer; S. Steinmassl; M. Ostrowski; A. Yusafzai;The unidentified very-high-energy (VHE;E> 0.1 TeV)γ-ray source, HESS J1826−130, was discovered with the High Energy Stereoscopic System (HESS) in the Galactic plane. The analysis of 215 h of HESS data has revealed a steadyγ-ray flux from HESS J1826−130, which appears extended with a half-width of 0.21° ± 0.02stat° ± 0.05sys°. The source spectrum is best fit with either a power-law function with a spectral index Γ = 1.78 ± 0.10stat± 0.20sysand an exponential cut-off at 15.2−3.2+5.5TeV, or a broken power-law with Γ1= 1.96 ± 0.06stat± 0.20sys, Γ2= 3.59 ± 0.69stat± 0.20sysfor energies below and aboveEbr= 11.2 ± 2.7 TeV, respectively. The VHE flux from HESS J1826−130 is contaminated by the extended emission of the bright, nearby pulsar wind nebula, HESS J1825−137, particularly at the low end of the energy spectrum. Leptonic scenarios for the origin of HESS J1826−130 VHE emission related to PSR J1826−1256 are confronted by our spectral and morphological analysis. In a hadronic framework, taking into account the properties of dense gas regions surrounding HESS J1826−130, the source spectrum would imply an astrophysical object capable of accelerating the parent particle population up to ≳200 TeV. Our results are also discussed in a multiwavelength context, accounting for both the presence of nearby supernova remnants, molecular clouds, and counterparts detected in radio, X-rays, and TeV energies.
DIAS Access to Insti... arrow_drop_down DIAS Access to Institutional RepositoryArticle . 2020 . Peer-reviewedData sources: DIAS Access to Institutional RepositoryUniversité Savoie Mont Blanc: HALArticle . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)HAL-IN2P3 (Institut national de physique nucléaire et de physique des particules)Article . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Recolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTAAstronomy and AstrophysicsArticle . 2020License: CC BYData sources: Universiteit van Amsterdam Digital Academic RepositoryUniversiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2020Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2020License: arXiv Non-Exclusive DistributionData sources: DataciteThe University of Adelaide: Digital LibraryArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)Eberhard Karls University Tübingen: Publication SystemArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)Dublin Institute for Advanced Studies: DIAS Institutional RepositoryArticle . 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.euAccess RoutesGreen hybrid 15 citations 15 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
visibility 31visibility views 31 download downloads 32 Powered bymore_vert DIAS Access to Insti... arrow_drop_down DIAS Access to Institutional RepositoryArticle . 2020 . Peer-reviewedData sources: DIAS Access to Institutional RepositoryUniversité Savoie Mont Blanc: HALArticle . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)HAL-IN2P3 (Institut national de physique nucléaire et de physique des particules)Article . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2020Full-Text: https://hal.science/hal-03371639Data sources: Bielefeld Academic Search Engine (BASE)Recolector de Ciencia Abierta, RECOLECTAArticle . 2020Data sources: Recolector de Ciencia Abierta, RECOLECTAAstronomy and AstrophysicsArticle . 2020License: CC BYData sources: Universiteit van Amsterdam Digital Academic RepositoryUniversiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2020Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2020License: arXiv Non-Exclusive DistributionData sources: DataciteThe University of Adelaide: Digital LibraryArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)Eberhard Karls University Tübingen: Publication SystemArticle . 2020Data sources: Bielefeld Academic Search Engine (BASE)Dublin Institute for Advanced Studies: DIAS Institutional RepositoryArticle . 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 Article , Other literature type , Preprint 2022Embargo end date: 01 Jan 2021 Netherlands, GermanyPublisher:American Astronomical Society A. Albert; R. Alfaro; C. Álvarez; J. D. Álvarez; José Roberto Ángeles Camacho; G. Trinchero; D. Avila Rojas; H. A. Ayala Solares; Rishi Babu; E. Belmont‐Moreno; C. Brisbois; K. S. Caballero‐Mora; T. Capistrán; A. Carramiñana; S. Casanova; U. Cotti; J. Cotzomi; Sara Coutiño de León; Eduardo de la Fuente; C. de León; R. Díaz Hernández; B. L. Dingus; M. A. DuVernois; Mora Durocher; J. C. Díaz–Vélez; Kristi Engel; C. Espinoza; Kwok Lung Fan; Ke Fang; Fernández Alonso; N. Fraija; D. Ramírez García; J. A. García-González; F. Garfias; Gwenael Giacinti; Hazal Goksu; M. M. González; J. A. Goodman; J. Patrick Harding; J. A. Hinton; B. Hona; Dezhi Huang; F. Hueyotl‐Zahuantitla; P. Hüntemeyer; A. Iriarte; A. Jardin-Blicq; Vikas Joshi; S. Kaufmann; D. Kieda; William H. Lee; J. Lee; H. León Vargas; J. T. Linnemann; A. L. Longinotti; G. Luis-Raya; K. Malone; V. Marandon; O. Martı́nez; J. Martínez-Castro; John A. Matthews; P. Miranda-Romagnoli; J. A. Morales-Soto; E. Moreno; M. Mostafá; A. Nayerhoda; Lukas Nellen; M. Newbold; Mehr Nisa; R. Noriega-Papaqui; Laura Olivera-Nieto; N. Omodei; Alison Peisker; Yunior Pérez Araujo; E. G. Pérez‐Pérez; Chang Dong Rho; D. Rosa‐González; H. Salazar; F. Salesa Greus; A. Sandoval; M. Schneider; Harm Schoorlemmer; José Serna-Franco; A. J. Smith; Youngwan Son; R. W. Springer; O. Tibolla; K. Tollefson; I. Torres; R. Torres-Escobedo; Rhiannon M. Turner; F. Ureña-Mena; L. Villaseñor; X. Wang; Cécile Caillol; E. Willox; A. Zepeda; H. Zhou; M. Breuhaus; H. Li; Haocheng Zhang;Abstract We report TeV gamma-ray observations of the ultra-high-energy source MGRO J1908+06 using data from the High Altitude Water Cherenkov Observatory. This source is one of the highest-energy known gamma-ray sources, with emission extending past 200 TeV. Modeling suggests that the bulk of the TeV gamma-ray emission is leptonic in nature, driven by the energetic radio-faint pulsar PSR J1907+0602. Depending on what assumptions are included in the model, a hadronic component may also be allowed. Using the results of the modeling, we discuss implications for detection prospects by multi-messenger campaigns.
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.euAccess RoutesGreen gold 11 citations 11 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert 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 2022Embargo end date: 01 Jan 2022 Australia, Poland, France, Australia, Sweden, Netherlands, Germany, GermanyPublisher:EDP Sciences Funded by:EC | SHARPEC| SHARPCollaboration, H. E. S. S.; Aharonian, F.; Benkhali, F. Ait; Anguner, E. O.; Ashkar, H.; Backes, M.; Martins, V. Barbosa; Batzofin, R.; Becherini, Y.; Berge, D.; Bernloehr, K.; Boettcher, M.; Boisson, C.; Bolmont, J.; de Lavergne, M. de Bony; Breuhaus, M.; Brose, R.; Brun, F.; Bulik, T.; Bylund, T.; Cangemi, F.; Caroff, S.; Casanova, S.; Cerruti, M.; Chand, T.; Chen, A.; Chibueze, O.; Cotter, G.; Cristofari, P.; Mbarubucyeye, J. Damascene; Devin, J.; Djannati-Atai, A.; Dmytriiev, A.; Egberts, K.; Einecke, S.; Ernenwein, J. -P.; Feijen, K.; Fiasson, A.; de Clairfontaine, G. Fichet; Fontaine, G.; Funk, S.; Gabici, S.; Gallant, Y. A.; Ghafourizadeh, S.; Giavitto, G.; Giunti, L.; Glawion, D.; Glicenstein, J. F.; Grondin, M. -H.; Hoerbe, M.; Hofmann, W.; Holch, T. L.; Holler, M.; Horns, D.; Huang, Zhiqiu; Jamrozy, M.; Joshi, V.; Jung-Richardt, I.; Kasai, E.; Katarzynski, K.; Katz, U.; Khelifi, B.; Kluzniak, W.; Komin, Nu.; Kosack, K.; Kostunin, D.; Lemiere, A.; Lemoine-Goumard, M.; Lenain, J. -P.; Leuschner, F.; Lohse, T.; Luashvili, A.; Lypova, I.; Mackey, J.; Malyshev, D.; Malyshev, D.; Marandon, V.; Marchegiani, P.; Marcowith, A.; Marti-Devesa, G.; Marx, R.; Maurin, G.; Meintjes, P. J.; Meyer, M.; Mitchell, A.; Moderski, R.; Mohrmann, L.; Montanari, A.; Moulin, E.; Muller, J.; Nakashima, K.; de Naurois, M.; Nayerhoda, A.; Niemiec, J.; Noel, A. Priyana; O'Brien, P.; Ohm, S.; Olivera-Nieto, L.; Wilhelmi, E. de Ona; Ostrowski, M.; Panny, S.; Panter, M.; Parsons, R. D.; Peron, G.; Poireau, V.; Prokhorov, D. A.; Puehlhofer, G.; Punch, M.; Quirrenbach, A.; Reichherzer, P.; Reimer, A.; Reimer, O.; Renaud, M.; Reville, B.; Rieger, F.; Rowell, G.; Rudak, B.; Ricarte, H. Rueda; Sahakian, V.; Sailer, S.; Salzmann, H.; Sanchez, D. A.; Santangelo, A.; Sasaki, M.; Schafer, J.; Schussler, F.; Schutte, H. M.; Schwanke, U.; Shapopi, J. N. S.; Simoni, R.; Sol, H.; Specovius, A.; Spencer, S.; Stawarz, L.; Steinmassl, S.; Steppa, C.; Sushch, I.; Takahashi, T.; Tanaka, T.; Taylor, A. M.; Terrier, R.; Tsirou, M.; Uchiyama, Y.; Unbehaun, T.; van Eldik, C.; Veh, J.; Vink, J.; Voelk, H. J.; Wagner, S. J.; Werner, F.; White, R.; Wierzcholska, A.; Wong, Yu Wun; Yusafzai, A.; Zacharias, M.; Zargaryan, D.; Zdziarski, A. A.; Zech, A.; Zhu, S. J.; Zouari, S.; Zywucka, N.;Observations with imaging atmospheric Cherenkov telescopes (IACTs) have enhanced our knowledge of nearby supernova (SN) remnants with ages younger than 500 yr by establishing Cassiopeia A and the remnant of Tycho’s SN as very-high-energy (VHE) γ-ray sources. The remnant of Kepler’s SN, which is the product of the most recent naked-eye SN in our Galaxy, is comparable in age to the other two, but is significantly more distant. If the γ-ray luminosities of the remnants of Tycho’s and Kepler’s SNe are similar, then the latter is expected to be one of the faintest γ-ray sources within reach of the current generation IACT arrays. Here we report evidence at a statistical level of 4.6σ for a VHE signal from the remnant of Kepler’s SN based on deep observations by the High Energy Stereoscopic System (H.E.S.S.) with an exposure of 152 h. The measured integral flux above an energy of 226 GeV is ∼0.3% of the flux of the Crab Nebula. The spectral energy distribution (SED) reveals a γ-ray emitting component connecting the VHE emission observed with H.E.S.S. to the emission observed at GeV energies with Fermi-LAT. The overall SED is similar to that of the remnant of Tycho’s SN, possibly indicating the same nonthermal emission processes acting in both these young remnants of thermonuclear SNe.
Astronomy and Astrop... arrow_drop_down Linnaeus University Kalmar Växjö: Publications (DiVA)Article . 2022Data sources: Bielefeld Academic Search Engine (BASE)Université Savoie Mont Blanc: HALArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)The University of Adelaide: Digital LibraryArticle . 2022License: CC BYFull-Text: https://hdl.handle.net/2440/136669Data sources: Bielefeld Academic Search Engine (BASE)École Polytechnique, Université Paris-Saclay: HALArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)HAL-IN2P3 (Institut national de physique nucléaire et de physique des particules)Article . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Astronomy and AstrophysicsArticle . 2022License: CC BYData sources: Universiteit van Amsterdam Digital Academic RepositoryDigitala Vetenskapliga Arkivet - Academic Archive On-lineArticle . 2022 . Peer-reviewedUniversiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2022Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2022License: arXiv Non-Exclusive DistributionData sources: DatacitePublikationsserver der Universität PotsdamArticle . 2022License: CC BYData sources: Publikationsserver der Universität PotsdamAstronomy and AstrophysicsArticle . 2022 . Peer-reviewedData sources: European Union Open Data PortalEberhard Karls University Tübingen: Publication SystemArticle . 2022Data 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.eu5 citations 5 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert Astronomy and Astrop... arrow_drop_down Linnaeus University Kalmar Växjö: Publications (DiVA)Article . 2022Data sources: Bielefeld Academic Search Engine (BASE)Université Savoie Mont Blanc: HALArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)The University of Adelaide: Digital LibraryArticle . 2022License: CC BYFull-Text: https://hdl.handle.net/2440/136669Data sources: Bielefeld Academic Search Engine (BASE)École Polytechnique, Université Paris-Saclay: HALArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)HAL-IN2P3 (Institut national de physique nucléaire et de physique des particules)Article . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2022Full-Text: https://hal.science/hal-03583160Data sources: Bielefeld Academic Search Engine (BASE)Astronomy and AstrophysicsArticle . 2022License: CC BYData sources: Universiteit van Amsterdam Digital Academic RepositoryDigitala Vetenskapliga Arkivet - Academic Archive On-lineArticle . 2022 . Peer-reviewedUniversiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2022Data sources: Bielefeld Academic Search Engine (BASE)https://dx.doi.org/10.48550/ar...Article . 2022License: arXiv Non-Exclusive DistributionData sources: DatacitePublikationsserver der Universität PotsdamArticle . 2022License: CC BYData sources: Publikationsserver der Universität PotsdamAstronomy and AstrophysicsArticle . 2022 . Peer-reviewedData sources: European Union Open Data PortalEberhard Karls University Tübingen: Publication SystemArticle . 2022Data 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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