论文标题

用静态电场检测轻的暗物质斧头检测

Light Dark Matter Axion Detection with Static Electric Field

论文作者

Gao, Yu, Huang, Yongsheng, Li, Zhengwei, Ruan, Manqi, Sha, Peng, Si, Meiyu, Yang, Qiaoli

论文摘要

我们通过狭窄的带探测方案探索轴承暗物质搜索灵敏度,该方案旨在通过圆柱电容器内部的静态电场轴 - 光子转换。当轴线暗物质流经电场时,有效电流会诱导交流磁场信号。在低轴质量下,在KKLT场景中,前端窄带过滤是通过使用具有高$ Q $因子的LC共振来提供的,从而增强了微小磁场信号的可检测性,并导致热噪声,因为在低温条件下可以减少的主要背景。我们证明,使用强电场可以实现高$ g_ {aγ} $敏感性。可以使用高$ e \ sim $ gvm $^{ - 1} $字段强度来达到QCD轴理论参数空间。使用静态电场方案基本上避免将敏感的超导拾音器暴露于应用的实验室磁场。

We explore the axionic dark matter search sensitivity with a narrow-band detection scheme aiming at the axion-photon conversion by the static electric field inside a cylindrical capacitor. An alternating magnetic field signal is induced by effective currents as the axion dark matter flows perpendicularly through the electric field. At low axion masses, like in a KKLT scenario, front-end narrow band filtering is provided by using LC resonance with a high $Q$ factor, which enhances the detectability of the tiny magnetic field signal and also leads to a thermal noise as the major background that can be reduced at cryogenic conditions. We demonstrate that high $g_{aγ}$ sensitivity can be achieved by using a strong electric field. The QCD axion theoretical parameter space can be reached with high $E\sim$ GVm$^{-1}$ field strength. Using the static electric field scheme essentially avoids exposing the sensitive superconducting pickup to an applied laboratory magnetic field.

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