English

Axion Haloscope Using an 18 T High Temperature Superconducting Magnet

High Energy Physics - Experiment 2022-12-14 v2 Instrumentation and Detectors

Abstract

We report details on the axion dark matter search experiment that uses the innovative technologies of a High-Temperature Superconducting (HTS) magnet and a Josephson Parametric Converter (JPC). An 18 T HTS solenoid magnet is developed for this experiment. The JPC is used as the first stage amplifier to achieve a near quantum-limited low-noise condition. The first dark matter axion search was performed with the 18 T axion haloscope. The scan frequency range is from 4.7789 GHz to 4.8094 GHz (30.5 MHz range). No significant signal consistent with Galactic dark matter axion is observed. Our results set the best limit of the axion-photon-photon coupling (gaγγg_{a\gamma\gamma}) in the axion mass range of 19.764 to 19.890 μ\mueV. Using the Bayesian method, the upper bounds of gaγγg_{a\gamma\gamma} are set at 0.98×gaγγKSVZ\times|g_{a\gamma\gamma}^{\text{KSVZ}}| (1.11×gaγγKSVZ\times|g_{a\gamma\gamma}^{\text{KSVZ}}|) in the mass ranges of 19.764 to 19.771 μ\mueV (19.863 to 19.890 μ\mueV), and at 1.76 ×gaγγKSVZ\times|g_{a\gamma\gamma}^{\text{KSVZ}}| in the mass ranges of 19.772 to 19.863 μ\mueV with 90\% confidence level, respectively. We report design, construction, operation, and data analysis of the 18 T axion haloscope experiment.

Keywords

Cite

@article{arxiv.2206.12271,
  title  = {Axion Haloscope Using an 18 T High Temperature Superconducting Magnet},
  author = {Hojin Yoon and Moohyun Ahn and Byeongsu Yang and Youngjae Lee and DongLak Kim and Heejun Park and Byeonghun Min and Jonghee Yoo},
  journal= {arXiv preprint arXiv:2206.12271},
  year   = {2022}
}

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PRD published version

R2 v1 2026-06-24T12:03:03.810Z