XENON1T dark matter data analysis: Signal and background models and statistical inference

Open Access
Authors
  • XENON Collaboration
Publication date 01-06-2019
Journal Physical Review D
Article number 112009
Volume | Issue number 99 | 11
Number of pages 18
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for High Energy Physics (IHEF)
Abstract
The XENON1T experiment searches for dark matter particles through their scattering off xenon atoms in a 2 metric ton liquid xenon target. The detector is a dual-phase time projection chamber, which measures simultaneously the scintillation and ionization signals produced by interactions in target volume, to reconstruct energy and position, as well as the type of the interaction. The background rate in the central volume of XENON1T detector is the lowest achieved so far with a liquid xenon-based direct detection experiment. In this work we describe the response model of the detector, the background and signal models, and the statistical inference procedures used in the dark matter searches with a 1  metric ton×year exposure of XENON1T data, that leads to the best limit to date on WIMP-nucleon spin-independent elastic scatter cross section for WIMP masses above 6  GeV/c2 .
Document type Article
Note © 2019 American Physical Society
Language English
Published at https://doi.org/10.1103/PhysRevD.99.112009
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PhysRevD.99.112009 (Final published version)
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