论文标题

重新访问轴突卤素的检测率

Revisiting the detection rate for axion haloscopes

论文作者

Kim, Dongok, Jeong, Junu, Youn, SungWoo, Kim, Younggeun, Semertzidis, Yannis K.

论文摘要

腔卤素已被用来检测微波光子在强磁场下从看不见的宇宙轴共转位。在此方案中,已配制了轴 - photon转换功率在某些条件下是有效的,$ q_ {vavity} \ ll q _ {\ rm axion} $或$ q_ {vavity} \ gg q_ q_ {axion} $。但是,当这两个数量彼此相当时,这种补救措施就会失败。此外,噪声功率流已经与系统的阻抗不匹配无关,这可能会引起对实验灵敏度的误导估计。我们重新审视了信号和噪声功率的一般描述的分析方法。我们还优化了接收器的耦合强度,以产生轴突搜索实验的最大灵敏度。

The cavity haloscope has been employed to detect microwave photons resonantly converted from invisible cosmic axions under a strong magnetic field. In this scheme, the axion-photon conversion power has been formulated to be valid for certain conditions, either $Q_{cavity}\ll Q_{\rm axion}$ or $Q_{cavity} \gg Q_{axion}$. This remedy, however, fails when these two quantities are comparable to each other. Furthermore, the noise power flow has been treated independently of the impedance mismatch of the system, which could give rise to misleading estimates of the experimental sensitivity. We revisit the analytical approaches to derive a general description of the signal and noise power. We also optimize the coupling strength of a receiver to yield the maximal sensitivity for axion search experiments.

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