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Study of the material photon and electron background and the liquid argon detector veto efficiency of the CDEX-10 experiment

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arxiv 1402.4591 v1 pith:V4A4MWSZ submitted 2014-02-19 physics.ins-det nucl-ex

Study of the material photon and electron background and the liquid argon detector veto efficiency of the CDEX-10 experiment

classification physics.ins-det nucl-ex
keywords backgroundcdex-10detectorelectronexperimentphotonactiveargon
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The China Dark Matter Experiment (CDEX) is located at the China Jinping underground laboratory (CJPL) and aims to directly detect the WIMP flux with high sensitivity in the low mass region. Here we present a study of the predicted photon and electron backgrounds including the background contribution of the structure materials of the germanium detector, the passive shielding materials, and the intrinsic radioactivity of the liquid argon that serves as an anti-Compton active shielding detector. A detailed geometry is modeled and the background contribution has been simulated based on the measured radioactivities of all possible components within the GEANT4 program. Then the photon and electron background level in the energy region of interest (<10^-2 events kg-1 day-1 keV-1 (cpkkd)) is predicted based on Monte Carlo simulations. The simulated result is consistent with the design goal of CDEX-10 experiment, 0.1 cpkkd, which shows that the active and passive shield design of CDEX-10 is effective and feasible.

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