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Dark matter sensitivity of multi-ton liquid xenon detectors

机译:多吨液体氙探测器的暗物质灵敏度

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摘要

We study the sensitivity of multi ton-scale time projection chambers using a liquid xenon target, e.g., the proposed DARWIN instrument, to spin-independent and spin-dependent WIMP-nucleon scattering interactions. Taking into account realistic backgrounds from the detector itself as well as from neutrinos, we examine the impact of exposure, energy threshold, background rejection efficiency and energy resolution on the dark matter sensitivity. With an exposure of 200 t x y and assuming detector parameters which have been already demonstrated experimentally, spin-independent cross sections as low as 2.5 x 10(-49) cm(2) can be probed for WIMP masses around 40 GeV/c(2). Additional improvements in terms of background rejection and exposure will further increase the sensitivity, while the ultimate WIMP science reach will be limited by neutrinos scattering coherently off the xenon nuclei.
机译:我们研究了使用液态氙靶(例如拟议的DARWIN仪器)的多吨级时间投影室对自旋无关和自旋依赖性WIMP-核子散射相互作用的敏感性。考虑到探测器本身以及中微子的真实背景,我们研究了曝光,能量阈值,背景抑制效率和能量分辨率对暗物质敏感性的影响。暴露200 txy并假设已经通过实验证明了检测器参数,可以探测低至2.5 x 10(-49)cm(2)的自旋无关截面,以检测40 GeV / c(2)附近的WIMP质量。 。在背景抑制和暴露方面的其他改进将进一步提高灵敏度,而WIMP的最终研究范围将受到氙原子相干地中子散射的限制。

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