Probing (Ultra-) Light Dark Matter Using Synchrotron Based Mössbauer Spectroscopy

Abhishek Banerjee
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Abstract

We propose to search for (ultra)-light scalar dark matter (DM) using synchrotron radiation based M\"ossbauer spectroscopy technique. Such DM induces temporal variation in various fundamental constants, which in turn causes time modulation of the nuclear transition energies. When a M\"ossbauer source and absorber is separated by a large baseline, the DM induced shift between their energy levels can be tested by the modulation of the photon absorption spectrum. The narrow M\"ossbauer transitions allow the setup to efficiently probe DM in the high frequency range. We show that the reach of a M\"ossbauer experiment with the existing synchrotron beams is at par with the bounds from various equivalence principle violation searches. An improvement of the synchrotron setup would enable us to probe the hitherto uncharted territory of the DM parameter space upto MHz frequency. The proposed method would extend the DM search beyond the EP limit by several orders of magnitude, and would provide the best bound on DM interaction strength with various standard model fields in the high ($>$kHz) frequency region.
利用同步加速器莫斯鲍尔光谱学探测(超)轻暗物质
我们提议利用基于同步辐射的奥斯包尔光谱技术来寻找(超)轻标量暗物质(DM)。这种暗物质会引起各种基本常数的时变,进而导致核转变能量的时变。当一个 M\"ossbauer 源和吸收器被一个大基线分开时,可以通过对光子吸收光谱的调制来测试 DM 引起的能级之间的移动。窄的M(ossbauer)跃迁允许该装置在高频范围内有效地探测DM。我们表明,利用现有同步加速器光束进行的M(ossbauer)实验的范围与各种等价原理违反搜索的范围相当。同步加速器装置的改进将使我们能够探测迄今为止未知的DM参数空间,直到MHz频率。拟议的方法将把DM搜索扩展到EP极限以外的几个数量级,并将提供在高频率($>$kHz)区域DM与各种标准模型场相互作用强度的最佳约束。
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