English

Revisiting the detection rate for axion haloscopes

High Energy Physics - Experiment 2020-04-15 v3 High Energy Physics - Phenomenology Instrumentation and Detectors

Abstract

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 QcavityQaxionQ_{cavity}\ll Q_{\rm axion} or QcavityQaxionQ_{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.

Keywords

Cite

@article{arxiv.2001.05605,
  title  = {Revisiting the detection rate for axion haloscopes},
  author = {Dongok Kim and Junu Jeong and SungWoo Youn and Younggeun Kim and Yannis K. Semertzidis},
  journal= {arXiv preprint arXiv:2001.05605},
  year   = {2020}
}

Comments

15 pages, 7 figures

R2 v1 2026-06-23T13:12:32.486Z