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Performance and Fundamental Processes at Low Energy in a Two-Phase Liquid Xenon Dark Matter Detector

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arxiv astro-ph/0608137 v2 pith:ILEQZOG4 submitted 2006-08-06 astro-ph physics.ins-det

classification astro-phphysics.ins-det
keywords darkdiscriminationenergiesmatterbelowdetectorelectronenergy
verification ladder T0 review T1 audit T2 compute T3 formal

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We extend the study of the performance of a prototype two-phase liquid xenon WIMP dark matter detector to recoil energies below 20 keV. We demonstrate a new method for obtaining the best estimate of the energies of events using a calibrated sum of charge and light signals and introduce the corresponding discrimination parameter, giving its mean value at 4 kV/cm for electron and nuclear recoils up to 300 and 100 keV, respectively. We show that fluctuations in recombination limit discrimination for most energies, and reveal an improvement in discrimination below 20 keV due to a surprising increase in ionization yield for low energy electron recoils. This improvement is crucial for a high-sensitivity dark matter search.

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  1. Measurement of the scintillation and ionization response of liquid xenon at MeV energies in the EXO-200 experiment

    physics.ins-det 2019-08 accept novelty 7.0 of 10

    EXO-200 measured the absolute ionization and scintillation yields of liquid xenon at 1.1-2.6 MeV, finding a W-value of 11.5 eV and a recombination-independent energy scale about 15% below the NEST simulation prediction.

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