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description Publicationkeyboard_double_arrow_right Article , Other literature type 2021 Croatia, Croatia, Croatia, Croatia, United StatesPublisher:Oxford University Press (OUP) Funded by:NSF | Structure of the Nucleon ...NSF| Structure of the Nucleon and Few-Body Nuclear Systems with Electron ScatteringKazuki Suzuki; T. Gogami; B. Pandey; K. Itabashi; S. Nagao; K. Okuyama; S. N. Nakamura; L. Tang; D. Abrams; T. Akiyama; D. Androić; K. Aniol; C. Ayerbe Gayoso; J. Bane; S. Barcus; J. Barrow; Vincenzo Bellini; Himani Bhatt; D. Bhetuwal; D. Biswas; A. Camsonne; J. Castillo Castellanos; J-P Chen; J Chen; S. Covrig; D. Chrisman; R. Cruz-Torres; Rasel Das; E. Fuchey; K. Gnanvo; F. Garibaldi; T. Gautam; J. Gómez; P. Guèye; The Hague; O. Hansén; W. Henry; F. Hauenstein; D. W. Higinbotham; Charles Hyde; M. Kaneta; C. Keppel; T. Kutz; N. Lashley-Colthirst; S. Li; H Liu; J. Mammei; P. Markowitz; R. E. McClellan; F. Meddi; D. Meekins; R. Michaels; M. Mihovilovič; A. Moyer; D. Nguyen; M. Nycz; V. Owen; C. Palatchi; S.‐K. PARK; Tomislav Petković; S. Premathilake; P. E. Reimer; J. Reinhold; S. Riordan; V. M. Rodriguez; C. Samanta; S N Santiesteban; B. Sawatzky; S. Širca; K. Slifer; T. Su; Y. Tian; Yuichi Toyama; K. Uehara; G. M. Urciuoli; D. Votaw; Jeffrey F. Williamson; B. Wojtsekhowski; S. A. Wood; B. Yale; Z Ye; J. Zhang; Xiaochao Zheng;Abstract The small binding energy of the hypertriton leads to predictions of the non-existence of bound hypernuclei for isotriplet three-body systems such as nnΛ. However, invariant mass spectroscopy at GSI has reported events that may be interpreted as the bound nnΛ state. The nnΛ state was sought by missing-mass spectroscopy via the (e, e′K+) reaction at Jefferson Lab’s experimental Hall A. The present experiment has higher sensitivity to the nnΛ-state investigation in terms of better precision by a factor of about three. The analysis shown in this article focuses on the derivation of the reaction cross-section for the 3H(γ*, K+)X reaction. Events that were detected in an acceptance, where a Monte Carlo simulation could reproduce the data well ($|\delta p/p| \lt 4\%$), were analyzed to minimize the systematic uncertainty. No significant structures were observed with the acceptance cuts, and the upper limits of the production cross-section of the nnΛ state were obtained to be 21 and $31 \, \rm {nb} \, \rm {sr}^{-1}$ at the $90\%$ confidence level when theoretical predictions of (−BΛ, Γ) = (0.25, 0.8) MeV and (0.55, 4.7) MeV, respectively, were assumed. The cross-section result provides valuable information for examining the existence of nnΛ.
Old Dominion Univers... arrow_drop_down Old Dominion University: ODU Digital CommonsArticle . 2022Data sources: Bielefeld Academic Search Engine (BASE)University of California: eScholarshipArticle . 2022Full-Text: https://escholarship.org/uc/item/0dx01447Data sources: Bielefeld Academic Search Engine (BASE)Progress of Theoretical and Experimental PhysicsArticle . 2021 . Peer-reviewedLicense: CC BYData sources: CrossrefCroatian Scientific Bibliography - CROSBIArticle . 2021Data sources: Croatian Scientific Bibliography - CROSBIProgress of Theoretical and Experimental PhysicsArticle . 2021Data sources: Croatian Research Information SystemRepository of the Faculty of Science, University of ZagrebOther literature type . 2022License: CC BYeScholarship - University of CaliforniaArticle . 2022Data sources: eScholarship - University of Californiaadd 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 9 citations 9 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert Old Dominion Univers... arrow_drop_down Old Dominion University: ODU Digital CommonsArticle . 2022Data sources: Bielefeld Academic Search Engine (BASE)University of California: eScholarshipArticle . 2022Full-Text: https://escholarship.org/uc/item/0dx01447Data sources: Bielefeld Academic Search Engine (BASE)Progress of Theoretical and Experimental PhysicsArticle . 2021 . Peer-reviewedLicense: CC BYData sources: CrossrefCroatian Scientific Bibliography - CROSBIArticle . 2021Data sources: Croatian Scientific Bibliography - CROSBIProgress of Theoretical and Experimental PhysicsArticle . 2021Data sources: Croatian Research Information SystemRepository of the Faculty of Science, University of ZagrebOther literature type . 2022License: CC BYeScholarship - University of CaliforniaArticle . 2022Data sources: eScholarship - University of Californiaadd 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.eudescription Publicationkeyboard_double_arrow_right Article , Preprint 2024Embargo end date: 01 Jan 2024 France, China (People's Republic of), China (People's Republic of), China (People's Republic of), Finland, Netherlands, France, Netherlands, Czech Republic, United Kingdom, United States, France, Czech Republic, Netherlands, Italy, France, United States, United Kingdom, Netherlands, Spain, France, France, France, France, FinlandPublisher:IOP Publishing Funded by:NSERC, UKRI | RootDetect: Remote Detect..., UKRI | SCORE: Supply Chain Optim... +2 projectsNSERC ,UKRI| RootDetect: Remote Detection and Precision Management of Root Health ,UKRI| SCORE: Supply Chain Optimisation for demand Response Efficiency ,UKRI| SemenRate Canada/UK: Transforming Germplasm and Genetic Quality to Drive Livestock Productivity ,FCT| LA 1DUNE Collaboration; Abud, A. Abed; Abi, B.; Acciarri, R.; Acero, M. A.; Adames, M. R.; Adamov, G.; Adamowski, M.; Adams, D.; Adinolfi, M.; Adriano, C.; Aduszkiewicz, A.; Aguilar, J.; Aimard, B.; Akbar, F.; Allison, K.; Monsalve, S. Alonso; Alrashed, M.; Alton, A.; Alvarez, R.; Es-sghir, H. Amar; Amedo, P.; Anderson, J.; Andrade, D. A.; Andreopoulos, C.; Andreotti, M.; Andrews, M. P.; Andrianala, F.; Andringa, S.; Anfimov, N.; Ankowski, A.; Antoniassi, M.; Antonova, M.; Antoshkin, A.; Aranda-Fernandez, A.; Arellano, L.; Diaz, E. Arrieta; Arroyave, M. A.; Asaadi, J.; Ashkenazi, A.; Asquith, L.; Atkin, E.; Auguste, D.; Aurisano, A.; Aushev, V.; Autiero, D.; Azfar, F.; Back, A.; Back, H.; Back, J. J.; Bagaturia, I.; Bagby, L.; Balashov, N.; Balasubramanian, S.; Baldi, P.; Baldini, W.; Baller, B.; Bambah, B.; Banerjee, R.; Barao, F.; Barenboim, G.; BarhamAlzás, P.; Barker, G. J.; Barkhouse, W.; Barr, G.; Monarca, J. Barranco; Barros, A.; Barros, N.; Barrow, D.; Barrow, J. L.; Basharina-Freshville, A.; Bashyal, A.; Basque, V.; Batchelor, C.; Bathe-Peters, L.; Battat, J. B. R.; Battisti, F.; Bay, F.; Bazetto, M. C. Q.; Alba, J. L. L. Bazo; Beacom, J. F.; Bechetoille, E.; Behera, B.; Belchior, E.; Bell, G.; Bellantoni, L.; Bellettini, G.; Bellini, V.; Beltramello, O.; Benekos, N.; Montiel, C. Benitez; Benjamin, D.; Neves, F. Bento; Berger, J.; Berkman, S.; Bernardini, P.; Bersani, A.; Bertolucci, S.; Betancourt, M.; Rodríguez, A. Betancur; Bevan, A.; Bezawada, Y.; Bezerra, A. T.; Bezerra, T. J.; Bhat, A.; Bhatnagar, V.; Bhatt, J.; Bhattacharjee, M.; Bhattacharya, M.; Bhuller, S.; Bhuyan, B.; Biagi, S.; Bian, J.; Biery, K.; Bilki, B.; Bishai, M.; Bitadze, A.; Blake, A.; Blaszczyk, F. D.; Blazey, G. C.; Blucher, E.; Boissevain, J.; Bolognesi, S.; Bolton, T.; Bomben, L.; Bonesini, M.; Bonilla-Diaz, C.; Bonini, F.; Booth, A.; Boran, F.; Bordoni, S.; Merlo, R. Borges; Borkum, A.; Bostan, N.; Bracinik, J.; Braga, D.; Brahma, B.; Brailsford, D.; Bramati, F.; Branca, A.; Brandt, A.; Bremer, J.; Brew, C.; Brice, S. J.; Brio, V.; Brizzolari, C.; Bromberg, C.; Brooke, J.; Bross, A.; Brunetti, G.; Brunetti, M.; Buchanan, N.; Budd, H.; Buergi, J.; Burgardt, D.; Butchart, S.; V., G. Caceres; Cagnoli, I.; Cai, T.; Calabrese, R.; Calcutt, J.; Calin, M.; Calivers, L.; Calvo, E.; Caminata, A.; Campanelli, W.; Benitez, A. Campos; Canci, N.; Capó, J.; Caracas, I.; Caratelli, D.; Carber, D.; Carceller, J. M.; Carini, G.; Carlus, B.; Carneiro, M. F.; Carniti, P.; Terrazas, I. Caro; Carranza, H.; Carrara, N.; Carroll, L.; Carroll, T.; Carter, A.; Casazza, D.; Forero, J. F. Castaño; Castaño, F. A.; Castillo, A.; Castromonte, C.; Catano-Mur, E.; Cattadori, C.; Cavalier, F.; Cavanna, F.; Centro, S.; Cerati, G.; Cervelli, A.; Villanueva, A. Cervera; Chakraborty, K.; Chalifour, M.; Chappell, A.; Charitonidis, N.;handle: https://repository.ubn.ru.nl/handle/2066/315676 , 11588/984855 , 2066/315676 , 2434/1119169 , 10281/522311 , 10486/718175 , 11379/608167 , 11573/1721244 , 11392/2560270 , 11567/1205055 , 11568/1259427 , 11695/138452 , 11587/529866 , 11585/1009926 , 11381/2993313 , 11571/1510842 , 10057/28199
handle: https://repository.ubn.ru.nl/handle/2066/315676 , 11588/984855 , 2066/315676 , 2434/1119169 , 10281/522311 , 10486/718175 , 11379/608167 , 11573/1721244 , 11392/2560270 , 11567/1205055 , 11568/1259427 , 11695/138452 , 11587/529866 , 11585/1009926 , 11381/2993313 , 11571/1510842 , 10057/28199
Abstract Doping of liquid argon TPCs (LArTPCs) with a small concentration of xenon is a technique for light-shifting and facilitates the detection of the liquid argon scintillation light. In this paper, we present the results of the first doping test ever performed in a kiloton-scale LArTPC. From February to May 2020, we carried out this special run in the single-phase DUNE Far Detector prototype (ProtoDUNE-SP) at CERN, featuring 720 t of total liquid argon mass with 410 t of fiducial mass. A 5.4 ppm nitrogen contamination was present during the xenon doping campaign. The goal of the run was to measure the light and charge response of the detector to the addition of xenon, up to a concentration of 18.8 ppm. The main purpose was to test the possibility for reduction of non-uniformities in light collection, caused by deployment of photon detectors only within the anode planes. Light collection was analysed as a function of the xenon concentration, by using the pre-existing photon detection system (PDS) of ProtoDUNE-SP and an additional smaller set-up installed specifically for this run. In this paper we first summarize our current understanding of the argon-xenon energy transfer process and the impact of the presence of nitrogen in argon with and without xenon dopant. We then describe the key elements of ProtoDUNE-SP and the injection method deployed. Two dedicated photon detectors were able to collect the light produced by xenon and the total light. The ratio of these components was measured to be about 0.65 as 18.8 ppm of xenon were injected. We performed studies of the collection efficiency as a function of the distance between tracks and light detectors, demonstrating enhanced uniformity of response for the anode-mounted PDS. We also show that xenon doping can substantially recover light losses due to contamination of the liquid argon by nitrogen.
Archivio Istituziona... arrow_drop_down Archivio della ricerca- Università di Roma La SapienzaArticle . 2024License: CC BYData sources: Archivio della ricerca- Università di Roma La SapienzaOxford University Research ArchiveArticle . 2024License: CC BYData sources: Oxford University Research ArchiveJyväskylä University Digital ArchiveArticle . 2024 . Peer-reviewedData sources: Jyväskylä University Digital ArchiveRepository of the Czech Academy of SciencesArticle . 2024Data sources: Repository of the Czech Academy of SciencesArchivio della Ricerca - Università di PisaArticle . 2024Data sources: Archivio della Ricerca - Università di Pisahttps://dx.doi.org/10.48550/ar...Article . 2024License: arXiv Non-Exclusive DistributionData sources: DataciteArchivio della ricerca dell'Università di Parma (CINECA IRIS)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)Université Savoie Mont Blanc: HALArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)IRIS UNIPV (Università degli studi di Pavia)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)Wichita State University: SOAR (Shocker Open Access Repository)Article . 2024Data 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.eu0 citations 0 popularity Average influence Average impulse Average Powered by BIP!
more_vert Archivio Istituziona... arrow_drop_down Archivio della ricerca- Università di Roma La SapienzaArticle . 2024License: CC BYData sources: Archivio della ricerca- Università di Roma La SapienzaOxford University Research ArchiveArticle . 2024License: CC BYData sources: Oxford University Research ArchiveJyväskylä University Digital ArchiveArticle . 2024 . Peer-reviewedData sources: Jyväskylä University Digital ArchiveRepository of the Czech Academy of SciencesArticle . 2024Data sources: Repository of the Czech Academy of SciencesArchivio della Ricerca - Università di PisaArticle . 2024Data sources: Archivio della Ricerca - Università di Pisahttps://dx.doi.org/10.48550/ar...Article . 2024License: arXiv Non-Exclusive DistributionData sources: DataciteArchivio della ricerca dell'Università di Parma (CINECA IRIS)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)Université Savoie Mont Blanc: HALArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)IRIS UNIPV (Università degli studi di Pavia)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)Wichita State University: SOAR (Shocker Open Access Repository)Article . 2024Data 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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description Publicationkeyboard_double_arrow_right Article , Other literature type 2021 Croatia, Croatia, Croatia, Croatia, United StatesPublisher:Oxford University Press (OUP) Funded by:NSF | Structure of the Nucleon ...NSF| Structure of the Nucleon and Few-Body Nuclear Systems with Electron ScatteringKazuki Suzuki; T. Gogami; B. Pandey; K. Itabashi; S. Nagao; K. Okuyama; S. N. Nakamura; L. Tang; D. Abrams; T. Akiyama; D. Androić; K. Aniol; C. Ayerbe Gayoso; J. Bane; S. Barcus; J. Barrow; Vincenzo Bellini; Himani Bhatt; D. Bhetuwal; D. Biswas; A. Camsonne; J. Castillo Castellanos; J-P Chen; J Chen; S. Covrig; D. Chrisman; R. Cruz-Torres; Rasel Das; E. Fuchey; K. Gnanvo; F. Garibaldi; T. Gautam; J. Gómez; P. Guèye; The Hague; O. Hansén; W. Henry; F. Hauenstein; D. W. Higinbotham; Charles Hyde; M. Kaneta; C. Keppel; T. Kutz; N. Lashley-Colthirst; S. Li; H Liu; J. Mammei; P. Markowitz; R. E. McClellan; F. Meddi; D. Meekins; R. Michaels; M. Mihovilovič; A. Moyer; D. Nguyen; M. Nycz; V. Owen; C. Palatchi; S.‐K. PARK; Tomislav Petković; S. Premathilake; P. E. Reimer; J. Reinhold; S. Riordan; V. M. Rodriguez; C. Samanta; S N Santiesteban; B. Sawatzky; S. Širca; K. Slifer; T. Su; Y. Tian; Yuichi Toyama; K. Uehara; G. M. Urciuoli; D. Votaw; Jeffrey F. Williamson; B. Wojtsekhowski; S. A. Wood; B. Yale; Z Ye; J. Zhang; Xiaochao Zheng;Abstract The small binding energy of the hypertriton leads to predictions of the non-existence of bound hypernuclei for isotriplet three-body systems such as nnΛ. However, invariant mass spectroscopy at GSI has reported events that may be interpreted as the bound nnΛ state. The nnΛ state was sought by missing-mass spectroscopy via the (e, e′K+) reaction at Jefferson Lab’s experimental Hall A. The present experiment has higher sensitivity to the nnΛ-state investigation in terms of better precision by a factor of about three. The analysis shown in this article focuses on the derivation of the reaction cross-section for the 3H(γ*, K+)X reaction. Events that were detected in an acceptance, where a Monte Carlo simulation could reproduce the data well ($|\delta p/p| \lt 4\%$), were analyzed to minimize the systematic uncertainty. No significant structures were observed with the acceptance cuts, and the upper limits of the production cross-section of the nnΛ state were obtained to be 21 and $31 \, \rm {nb} \, \rm {sr}^{-1}$ at the $90\%$ confidence level when theoretical predictions of (−BΛ, Γ) = (0.25, 0.8) MeV and (0.55, 4.7) MeV, respectively, were assumed. The cross-section result provides valuable information for examining the existence of nnΛ.
Old Dominion Univers... arrow_drop_down Old Dominion University: ODU Digital CommonsArticle . 2022Data sources: Bielefeld Academic Search Engine (BASE)University of California: eScholarshipArticle . 2022Full-Text: https://escholarship.org/uc/item/0dx01447Data sources: Bielefeld Academic Search Engine (BASE)Progress of Theoretical and Experimental PhysicsArticle . 2021 . Peer-reviewedLicense: CC BYData sources: CrossrefCroatian Scientific Bibliography - CROSBIArticle . 2021Data sources: Croatian Scientific Bibliography - CROSBIProgress of Theoretical and Experimental PhysicsArticle . 2021Data sources: Croatian Research Information SystemRepository of the Faculty of Science, University of ZagrebOther literature type . 2022License: CC BYeScholarship - University of CaliforniaArticle . 2022Data sources: eScholarship - University of Californiaadd 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 9 citations 9 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert Old Dominion Univers... arrow_drop_down Old Dominion University: ODU Digital CommonsArticle . 2022Data sources: Bielefeld Academic Search Engine (BASE)University of California: eScholarshipArticle . 2022Full-Text: https://escholarship.org/uc/item/0dx01447Data sources: Bielefeld Academic Search Engine (BASE)Progress of Theoretical and Experimental PhysicsArticle . 2021 . Peer-reviewedLicense: CC BYData sources: CrossrefCroatian Scientific Bibliography - CROSBIArticle . 2021Data sources: Croatian Scientific Bibliography - CROSBIProgress of Theoretical and Experimental PhysicsArticle . 2021Data sources: Croatian Research Information SystemRepository of the Faculty of Science, University of ZagrebOther literature type . 2022License: CC BYeScholarship - University of CaliforniaArticle . 2022Data sources: eScholarship - University of Californiaadd 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/ptep/ptab158&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Preprint 2024Embargo end date: 01 Jan 2024 France, China (People's Republic of), China (People's Republic of), China (People's Republic of), Finland, Netherlands, France, Netherlands, Czech Republic, United Kingdom, United States, France, Czech Republic, Netherlands, Italy, France, United States, United Kingdom, Netherlands, Spain, France, France, France, France, FinlandPublisher:IOP Publishing Funded by:NSERC, UKRI | RootDetect: Remote Detect..., UKRI | SCORE: Supply Chain Optim... +2 projectsNSERC ,UKRI| RootDetect: Remote Detection and Precision Management of Root Health ,UKRI| SCORE: Supply Chain Optimisation for demand Response Efficiency ,UKRI| SemenRate Canada/UK: Transforming Germplasm and Genetic Quality to Drive Livestock Productivity ,FCT| LA 1DUNE Collaboration; Abud, A. Abed; Abi, B.; Acciarri, R.; Acero, M. A.; Adames, M. R.; Adamov, G.; Adamowski, M.; Adams, D.; Adinolfi, M.; Adriano, C.; Aduszkiewicz, A.; Aguilar, J.; Aimard, B.; Akbar, F.; Allison, K.; Monsalve, S. Alonso; Alrashed, M.; Alton, A.; Alvarez, R.; Es-sghir, H. Amar; Amedo, P.; Anderson, J.; Andrade, D. A.; Andreopoulos, C.; Andreotti, M.; Andrews, M. P.; Andrianala, F.; Andringa, S.; Anfimov, N.; Ankowski, A.; Antoniassi, M.; Antonova, M.; Antoshkin, A.; Aranda-Fernandez, A.; Arellano, L.; Diaz, E. Arrieta; Arroyave, M. A.; Asaadi, J.; Ashkenazi, A.; Asquith, L.; Atkin, E.; Auguste, D.; Aurisano, A.; Aushev, V.; Autiero, D.; Azfar, F.; Back, A.; Back, H.; Back, J. J.; Bagaturia, I.; Bagby, L.; Balashov, N.; Balasubramanian, S.; Baldi, P.; Baldini, W.; Baller, B.; Bambah, B.; Banerjee, R.; Barao, F.; Barenboim, G.; BarhamAlzás, P.; Barker, G. J.; Barkhouse, W.; Barr, G.; Monarca, J. Barranco; Barros, A.; Barros, N.; Barrow, D.; Barrow, J. L.; Basharina-Freshville, A.; Bashyal, A.; Basque, V.; Batchelor, C.; Bathe-Peters, L.; Battat, J. B. R.; Battisti, F.; Bay, F.; Bazetto, M. C. Q.; Alba, J. L. L. Bazo; Beacom, J. F.; Bechetoille, E.; Behera, B.; Belchior, E.; Bell, G.; Bellantoni, L.; Bellettini, G.; Bellini, V.; Beltramello, O.; Benekos, N.; Montiel, C. Benitez; Benjamin, D.; Neves, F. Bento; Berger, J.; Berkman, S.; Bernardini, P.; Bersani, A.; Bertolucci, S.; Betancourt, M.; Rodríguez, A. Betancur; Bevan, A.; Bezawada, Y.; Bezerra, A. T.; Bezerra, T. J.; Bhat, A.; Bhatnagar, V.; Bhatt, J.; Bhattacharjee, M.; Bhattacharya, M.; Bhuller, S.; Bhuyan, B.; Biagi, S.; Bian, J.; Biery, K.; Bilki, B.; Bishai, M.; Bitadze, A.; Blake, A.; Blaszczyk, F. D.; Blazey, G. C.; Blucher, E.; Boissevain, J.; Bolognesi, S.; Bolton, T.; Bomben, L.; Bonesini, M.; Bonilla-Diaz, C.; Bonini, F.; Booth, A.; Boran, F.; Bordoni, S.; Merlo, R. Borges; Borkum, A.; Bostan, N.; Bracinik, J.; Braga, D.; Brahma, B.; Brailsford, D.; Bramati, F.; Branca, A.; Brandt, A.; Bremer, J.; Brew, C.; Brice, S. J.; Brio, V.; Brizzolari, C.; Bromberg, C.; Brooke, J.; Bross, A.; Brunetti, G.; Brunetti, M.; Buchanan, N.; Budd, H.; Buergi, J.; Burgardt, D.; Butchart, S.; V., G. Caceres; Cagnoli, I.; Cai, T.; Calabrese, R.; Calcutt, J.; Calin, M.; Calivers, L.; Calvo, E.; Caminata, A.; Campanelli, W.; Benitez, A. Campos; Canci, N.; Capó, J.; Caracas, I.; Caratelli, D.; Carber, D.; Carceller, J. M.; Carini, G.; Carlus, B.; Carneiro, M. F.; Carniti, P.; Terrazas, I. Caro; Carranza, H.; Carrara, N.; Carroll, L.; Carroll, T.; Carter, A.; Casazza, D.; Forero, J. F. Castaño; Castaño, F. A.; Castillo, A.; Castromonte, C.; Catano-Mur, E.; Cattadori, C.; Cavalier, F.; Cavanna, F.; Centro, S.; Cerati, G.; Cervelli, A.; Villanueva, A. Cervera; Chakraborty, K.; Chalifour, M.; Chappell, A.; Charitonidis, N.;handle: https://repository.ubn.ru.nl/handle/2066/315676 , 11588/984855 , 2066/315676 , 2434/1119169 , 10281/522311 , 10486/718175 , 11379/608167 , 11573/1721244 , 11392/2560270 , 11567/1205055 , 11568/1259427 , 11695/138452 , 11587/529866 , 11585/1009926 , 11381/2993313 , 11571/1510842 , 10057/28199
handle: https://repository.ubn.ru.nl/handle/2066/315676 , 11588/984855 , 2066/315676 , 2434/1119169 , 10281/522311 , 10486/718175 , 11379/608167 , 11573/1721244 , 11392/2560270 , 11567/1205055 , 11568/1259427 , 11695/138452 , 11587/529866 , 11585/1009926 , 11381/2993313 , 11571/1510842 , 10057/28199
Abstract Doping of liquid argon TPCs (LArTPCs) with a small concentration of xenon is a technique for light-shifting and facilitates the detection of the liquid argon scintillation light. In this paper, we present the results of the first doping test ever performed in a kiloton-scale LArTPC. From February to May 2020, we carried out this special run in the single-phase DUNE Far Detector prototype (ProtoDUNE-SP) at CERN, featuring 720 t of total liquid argon mass with 410 t of fiducial mass. A 5.4 ppm nitrogen contamination was present during the xenon doping campaign. The goal of the run was to measure the light and charge response of the detector to the addition of xenon, up to a concentration of 18.8 ppm. The main purpose was to test the possibility for reduction of non-uniformities in light collection, caused by deployment of photon detectors only within the anode planes. Light collection was analysed as a function of the xenon concentration, by using the pre-existing photon detection system (PDS) of ProtoDUNE-SP and an additional smaller set-up installed specifically for this run. In this paper we first summarize our current understanding of the argon-xenon energy transfer process and the impact of the presence of nitrogen in argon with and without xenon dopant. We then describe the key elements of ProtoDUNE-SP and the injection method deployed. Two dedicated photon detectors were able to collect the light produced by xenon and the total light. The ratio of these components was measured to be about 0.65 as 18.8 ppm of xenon were injected. We performed studies of the collection efficiency as a function of the distance between tracks and light detectors, demonstrating enhanced uniformity of response for the anode-mounted PDS. We also show that xenon doping can substantially recover light losses due to contamination of the liquid argon by nitrogen.
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more_vert Archivio Istituziona... arrow_drop_down Archivio della ricerca- Università di Roma La SapienzaArticle . 2024License: CC BYData sources: Archivio della ricerca- Università di Roma La SapienzaOxford University Research ArchiveArticle . 2024License: CC BYData sources: Oxford University Research ArchiveJyväskylä University Digital ArchiveArticle . 2024 . Peer-reviewedData sources: Jyväskylä University Digital ArchiveRepository of the Czech Academy of SciencesArticle . 2024Data sources: Repository of the Czech Academy of SciencesArchivio della Ricerca - Università di PisaArticle . 2024Data sources: Archivio della Ricerca - Università di Pisahttps://dx.doi.org/10.48550/ar...Article . 2024License: arXiv Non-Exclusive DistributionData sources: DataciteArchivio della ricerca dell'Università di Parma (CINECA IRIS)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)Université Savoie Mont Blanc: HALArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Archive de l'Observatoire de Paris (HAL)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)IRIS UNIPV (Università degli studi di Pavia)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)Wichita State University: SOAR (Shocker Open Access Repository)Article . 2024Data 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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