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Dark Matter Detection with Bound Nuclear Targets: The Poisson Phonon Tail

机译:暗物质检测与束缚核目标:泊松山尾巴

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摘要

Dark matter (DM) scattering with nuclei in solid-state systems may produce elastic nuclear recoil at high energies and single-phonon excitation at low energies. When the DM momentum is comparable to the momentum spread of nuclei bound in a lattice, q(0) = root 2m(N)omega(0) where m(N) is the mass of the nucleus and omega(0) is the optical phonon energy, an intermediate scattering regime characterized by multiphonon excitations emerges. We study a greatly simplified model of a single nucleus in a harmonic potential and show that, while the mean energy deposited for a given momentum transfer q is equal to the elastic value q(2)/(2m(N)), the phonon occupation number follows a Poisson distribution and thus the energy spread is Delta E = q root omega(0)/(2m(N)). This observation suggests that low-threshold calorimetric detectors may have significantly increased sensitivity to sub-GeV DM compared to the expectation from elastic scattering, even when the energy threshold is above the single-phonon energy, by exploiting the tail of the Poisson distribution for phonons above the elastic energy. We use a simple model of electronic excitations to argue that this multiphonon signal will also accompany ionization signals induced from DM-electron scattering or the Migdal effect. In well-motivated models where DM couples to a heavy, kinetically mixed dark photon, we show that these signals can probe experimental milestones for cosmological DM production via thermal freeze-out, including the thermal target for Majorana fermion DM.
机译:用固态系统中的核的暗物质(DM)散射可以在低能量下产生高能量和单声道激发的弹性核反冲。当DM动量与晶格中结合的核的动量扩散相当时,Q(0)=根2M(n)ω(0)其中m(n)是核和ω(0)的质量是光学的声子能量,一种中间散射制度,其特征在于多欢激励的表征。我们在谐波潜力中研究了一个大型简化的单个核模型,并且表明,在给定的动量转移Q的平均能量等于弹性值Q(2)/(2M(n)),位于声子占用数字遵循泊松分布,因此能量扩散是ΔE= Q根ω(0)/(2M(n))。该观察结果表明,与弹性散射的期望相比,低阈值量热检测器对子GEV DM的敏感性显着增加,即使在能量阈值高于单声道能量时,通过利用泊松分布的泊松能量,即使在单声道能量上高于单声道散射而高于弹性能量。我们使用简单的电子激发模型来争辩说,该多光信号还将伴随由DM-Electron散射或MIGDAL效应引起的电离信号。在激励型号的型号中,DM耦合到沉重的,动力学混合的暗光子,我们表明这些信号可以通过热防冻探测宇宙学DM生产的实验里程碑,包括Majorana Fermion DM的热靶标。

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  • 来源
    《Physical review letters》 |2021年第8期|081804.1-081804.7|共7页
  • 作者单位

    Univ Illinois Dept Phys Urbana IL 61801 USA|Univ Illinois Illinois Ctr Adv Studies Universe Urbana IL 61801 USA;

    Fermilab Natl Accelerator Lab POB 500 Batavia IL 60510 USA|Univ Chicago Kavli Inst Cosmol Phys Chicago IL 60637 USA;

    Univ Illinois Dept Phys Urbana IL 61801 USA;

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  • 正文语种 eng
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