학술논문

Energy resolution and linearity of XENON1T in the MeV energy range
Document Type
article
Author
E. AprileJ. AalbersF. AgostiniM. AlfonsiL. AlthueserF. D. AmaroV. C. AntochiE. AngelinoJ. AngevaareF. ArneodoD. BargeL. BaudisB. BauermeisterL. BellagambaM. L. BenabderrahmaneT. BergerP. A. BreurA. BrownE. BrownS. BruennerG. BrunoR. BudnikC. CapelliJ. M. R. CardosoD. CichonB. CimminoM. ClarkD. CoderreA. P. ColijnJ. ConradJ. P. CussonneauM. P. DecowskiA. DepoianP. Di GangiA. Di GiovanniR. Di StefanoS. DiglioA. ElykovG. EurinA. D. FerellaW. FulgioneP. GaemersR. GaiorA. Gallo RossoM. GallowayF. GaoM. GarbiniL. GrandiC. HasterokC. HilsK. HiraideL. HoetzschE. HogenbirkJ. HowlettM. IacovacciY. ItowF. JoergN. KatoS. KazamaM. KobayashiG. KoltmanA. KopecH. LandsmanR. F. LangL. LevinsonQ. LinS. LindemannM. LindnerF. LombardiJ. A. M. LopesE. López FuneC. MacolinoJ. MahlstedtL. ManentiA. ManfrediniF. MarignettiT. Marrodán UndagoitiaK. MartensJ. MasbouD. MassonS. MastroianniM. MessinaK. MiuchiA. MolinarioK. MoråS. MoriyamaY. MosbacherM. MurraJ. NaganomaK. NiU. OberlackK. OdgersJ. PalacioB. PelssersR. PeresJ. PienaarV. PizzellaG. PlanteJ. QinH. QiuD. Ramírez GarcíaS. ReichardA. RocchettiN. RuppJ. M. F. dos SantosG. SartorelliN. ŠarčevićM. ScheibelhutS. SchindlerJ. SchreinerD. SchulteM. SchumannL. Scotto LavinaM. SelviF. SemeriaP. ShaginE. ShockleyM. SilvaH. SimgenA. TakedaC. TherreauD. ThersF. ToschiG. TrincheroC. TunnellM. VargasG. VoltaO. WackH. WangY. WeiC. WeinheimerM. Weiss XuD. WenzC. WittwegJ. WulfZ. XuM. YamashitaJ. YeG. ZavattiniY. ZhangT. ZhuJ. P. Zopounidis
Source
European Physical Journal C: Particles and Fields, Vol 80, Iss 8, Pp 1-9 (2020)
Subject
Astrophysics
QB460-466
Nuclear and particle physics. Atomic energy. Radioactivity
QC770-798
Language
English
ISSN
1434-6044
1434-6052
Abstract
Abstract Xenon dual-phase time projection chambers designed to search for weakly interacting massive particles have so far shown a relative energy resolution which degrades with energy above $$\sim $$ ∼ 200 keV due to the saturation effects. This has limited their sensitivity in the search for rare events like the neutrinoless double-beta decay of $$^{136} \hbox {Xe}$$ 136Xe at its Q value, $$Q_{\beta \beta }\simeq 2.46\,\hbox {MeV}$$ Qββ≃2.46MeV . For the XENON1T dual-phase time projection chamber, we demonstrate that the relative energy resolution at $$1\,\sigma /\mu $$ 1σ/μ is as low as ($$0.80 \pm 0.02$$ 0.80±0.02 ) % in its one-ton fiducial mass, and for single-site interactions at $$Q_{\beta \beta }$$ Qββ . We also present a new signal correction method to rectify the saturation effects of the signal readout system, resulting in more accurate position reconstruction and indirectly improving the energy resolution. The very good result achieved in XENON1T opens up new windows for the xenon dual-phase dark matter detectors to simultaneously search for other rare events.