暗物质
物理
探测器
等离子体子
钻石
光学
散射
各向异性
光散射
吸收(声学)
暖稠密物质
光电子学
暗场显微术
计算
物质波
毫米
制作
表面等离子体子
暗电流
光电探测器
作者
Yonit Hochberg,Dino Novko,Rotem Ovadia,Antonio Politano
摘要
We propose the use of several unconventional materials as detectors for dark matter with mass beneath the MeV scale. These include the transition-metal dichalcogenide TiSe 2 hosting a low-energy plasmon in the charge-density-wave phase, Sr 2 RuO 4 containing a low-energy acoustic demon mode, and hole-doped diamond with tunable optical and acoustic plasmon frequencies. We perform first-principles density functional theory computations of their loss functions at nonvanishing momenta and establish their reach into light dark matter parameter space. We show that due to intense low-energy plasmon modes—of different microscopic origin in each—the reach of detectors based on these materials could surpass existing proposals by several orders of magnitude for both dark matter scattering and absorption on electrons. The anisotropic response of these materials, which enables directional detection, renders them exceptionally strong detector candidates, motivating the design and fabrication of future devices.
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