학술논문

Low-energy calibration of XENON1T with an internal $$^{{\textbf {37}}}$$ 37 Ar source
Document Type
article
Author
E. AprileK. AbeF. AgostiniS. Ahmed MaouloudM. AlfonsiL. AlthueserB. AndrieuE. AngelinoJ. R. AngevaareV. C. AntochiD. Antón MartinF. ArneodoL. BaudisA. L. BaxterL. BellagambaR. BiondiA. BismarkA. BrownS. BruennerG. BrunoR. BudnikT. K. BuiC. CaiC. CapelliJ. M. R. CardosoD. CichonA. P. ColijnJ. ConradJ. J. Cuenca-GarcíaJ. P. CussonneauV. D’AndreaM. P. DecowskiP. Di GangiS. Di PedeS. DiglioK. EitelA. ElykovS. FarrellA. D. FerellaC. FerrariH. FischerW. FulgioneP. GaemersR. GaiorA. Gallo RossoM. GallowayF. GaoR. Glade-BeuckeL. GrandiJ. GrigatM. GuidaR. HammannA. HigueraC. HilsL. HoetzschJ. HowlettM. IacovacciY. ItowJ. JakobF. JoergA. JoyN. KatoM. KaraP. KavriginS. KazamaM. KobayashiG. KoltmanA. KopecF. KugerH. LandsmanR. F. LangL. LevinsonI. LiS. LiS. LiangS. LindemannM. LindnerK. LiuJ. LoizeauF. LombardiJ. LongJ. A. M. LopesY. MaC. MacolinoJ. MahlstedtA. MancusoL. ManentiF. MarignettiT. Marrodán UndagoitiaK. MartensJ. MasbouD. MassonE. MassonS. MastroianniM. MessinaK. MiuchiK. MizukoshiA. MolinarioS. MoriyamaK. MoråY. MosbacherM. MurraJ. MüllerK. NiU. OberlackB. PaetschJ. PalacioR. PeresC. PetersJ. PienaarM. PierreV. PizzellaG. PlanteJ. QiJ. QinD. Ramírez GarcíaS. ReichardA. RocchettiN. RuppL. SanchezP. Sanchez-LucasJ. M. F. dos SantosI. SarnoffG. SartorelliJ. SchreinerD. SchulteP. SchulteH. Schulze EißingM. SchumannL. Scotto LavinaM. SelviF. SemeriaP. ShaginS. ShiE. ShockleyM. SilvaH. SimgenA. TakedaP.-L. TanA. TerliukD. ThersF. ToschiG. TrincheroC. TunnellF. TönniesK. ValeriusG. VoltaC. WeinheimerM. WeissD. WenzC. WittwegT. WolfD. XuZ. XuM. YamashitaL. YangJ. YeL. YuanG. ZavattiniS. ZerboM. ZhongT. ZhuC. GeppertJ. RiemerXENON Collaboration
Source
European Physical Journal C: Particles and Fields, Vol 83, Iss 6, Pp 1-15 (2023)
Subject
Astrophysics
QB460-466
Nuclear and particle physics. Atomic energy. Radioactivity
QC770-798
Language
English
ISSN
1434-6052
Abstract
Abstract A low-energy electronic recoil calibration of XENON1T, a dual-phase xenon time projection chamber, with an internal $${}^{37}$$ 37 Ar source was performed. This calibration source features a 35-day half-life and provides two mono-energetic lines at 2.82 keV and 0.27 keV. The photon yield and electron yield at 2.82 keV are measured to be ( $$32.3\,\pm \,0.3$$ 32.3 ± 0.3 ) photons/keV and ( $$40.6\,\pm \,0.5$$ 40.6 ± 0.5 ) electrons/keV, respectively, in agreement with other measurements and with NEST predictions. The electron yield at 0.27 keV is also measured and it is ( $$68.0^{+6.3}_{-3.7}$$ 68 . 0 - 3.7 + 6.3 ) electrons/keV. The $${}^{37}$$ 37 Ar calibration confirms that the detector is well-understood in the energy region close to the detection threshold, with the 2.82 keV line reconstructed at ( $$2.83\,\pm \,0.02$$ 2.83 ± 0.02 ) keV, which further validates the model used to interpret the low-energy electronic recoil excess previously reported by XENON1T. The ability to efficiently remove argon with cryogenic distillation after the calibration proves that $${}^{37}$$ 37 Ar can be considered as a regular calibration source for multi-tonne xenon detectors.