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Directional dark matter by polar angle direct detection and application of columnar recombination

Cited 7 time in webofscience Cited 7 time in scopus
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Title
Directional dark matter by polar angle direct detection and application of columnar recombination
Author(s)
Jin Li
Publication Date
2015-08
Journal
Physical Review D - Particles, Fields, Gravitation and Cosmology, v.92, no.4, pp.043523
Publisher
American Physical Society
Abstract
We report a systematic study on the directional sensitivity of a direct dark matter detector that detects the polar angle of a recoiling nucleus. A weakly interacting massive particle (WIMP)-mass independent method is used to obtain the sensitivity of a general detector in an isothermal galactic dark matter halo. By using two-dimensional distributions of energy and polar angle, a detector without head-tail information with 6.3 times the statistics is found to achieve the same performance level as a full three-dimensional tracking dark matter detector. Optimum operation orientations are obtained for various experimental configurations, with detectors that are space-or Earth-fixed, have head-tail capability or not, and use energy information or not. Earth-fixed detectors are found to have best sensitivity when the polar axis is oriented at a 45 degree angle from the Earth's pole. With background contamination that mimics the WIMP signal's energy distribution, the performance is found to decrease at a rate less than the decrease of signal purity. The WIMP-mass dependence of the performance of a detector with various energy thresholds that uses gaseous xenon as target material is reported. We find that with a 5 x 10(-46) cm(2) spin-independent WIMP-nucleon cross-section and a 30 GeV WIMP, a 770 kg . year's exposure with a polar detector of 10 keV threshold can make a three sigma discovery of directional WIMPs in the isothermal galactic dark matter halo. For a columnar recombination detector, experimental considerations are discussed.
URI
https://pr.ibs.re.kr/handle/8788114/1937
DOI
10.1103/PhysRevD.92.043523
ISSN
1550-7998
Appears in Collections:
Center for Underground Physics(지하실험 연구단) > 1. Journal Papers (저널논문)
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