用共振耦合混合自旋系统进行暗物质搜索。

Kai Wei, Zitong Xu, Yuxuan He, Xiaolin Ma, Xing Heng, Xiaofei Huang, Wei Quan, Wei Ji, Jia Liu, Xiao-Ping Wang, Dmitry Budker, Jiancheng Fang
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引用次数: 0

摘要

桌面量子传感器技术的最新进展使暗物质(DM)的非引力相互作用的搜索成为可能。传统的轴子DM实验依赖于尖锐共振,导致扫描时间长,覆盖范围广。在这项工作中,我们提出了碱基-${}^{21}$Ne自旋体系中的宽带方法。我们确定了两种不同的混合自旋耦合机制:低频自补偿(SC)机制和高频混合自旋共振(HSR)机制。通过利用这两种不同的机制,与传统核磁共振相比,我们显著提高了${}^{21}$Ne核自旋的带宽,同时保持了竞争性的灵敏度。我们对类轴子暗物质进行了全面的宽带搜索,覆盖了$[10^{-2},\,10^3]$ $ $,Hz范围内的康普顿频率的5个数量级。我们对轴子暗物质与中子和质子的相互作用设定了新的约束,考虑了DM随机性的影响。axion-neutron耦合,我们的结果达到一个低价值的美元| g_ le 3{安}| \ \ * 10 ^{-10}在频率范围内美元[2 \ * 10 ^{2},\,4]\美元,赫兹超过了天体物理限制和提供最强的实验室约束[10,100年\]\美元,赫兹范围。对于轴子-质子耦合,我们给出了$[2\乘以10^{-2},\,5]$\,Hz和$[16 \,7\乘以10^{2}]$\,Hz的最佳地面约束。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dark matter search with a resonantly-coupled hybrid spin system.

Recent advances in tabletop quantum sensor technology have enabled searches for nongravitational interactions of dark matter (DM). Traditional axion DM experiments rely on sharp resonance, resulting in extensive scanning time to cover a wide mass range. In this work, we present a broadband approach in an alkali- 21Ne spin system. We identify two distinct hybrid spin-coupled regimes: a self-compensation regime at low frequencies and a hybrid spin resonance regime at higher frequencies. By utilizing these two distinct regimes, we significantly enhance the bandwidth of 21Ne nuclear spin compared to conventional nuclear magnetic resonance, while maintaining competitive sensitivity. We present a comprehensive broadband search for axion-like DM, covering 5 orders of magnitude of Compton frequencies range within[10-2,103] Hz. We set new constraints on the axion DM interactions with neutrons and protons, accounting for the effects of DM stochasticity. For the axion-neutron coupling, our results reach a low value of|gann|⩽3×10-10in the frequency range[2×10-2,4] Hz surpassing astrophysical limits and providing the strongest laboratory constraints in the[10,100] Hz range. For the axion-proton coupling, we offer the best terrestrial constraints for the frequency ranges[2×10-2,5] Hz and[16,7×102] Hz.

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