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Extensive search for axion dark matter over 1\,GHz with CAPP's Main Axion eXperiment

High Energy Physics - Experiment 2024-02-21 v1 High Energy Physics - Phenomenology

Abstract

We report an extensive high-sensitivity search for axion dark matter above 1\,GHz at the Center for Axion and Precision Physics Research (CAPP). The cavity resonant search, exploiting the coupling between axions and photons, explored the frequency (mass) range of 1.025\,GHz (4.24\,μ\mueV) to 1.185\,GHz (4.91\,μ\mueV). We have introduced a number of innovations in this field, demonstrating the practical approach of optimizing all the relevant parameters of axion haloscopes, extending presently available technology. The CAPP 12\,T magnet with an aperture of 320\,mm made of Nb3_3Sn and NbTi superconductors surrounding a 37-liter ultralight-weight copper cavity is expected to convert DFSZ axions into approximately 10210^2 microwave photons per second. A powerful dilution refrigerator, capable of keeping the core system below 40\,mK, combined with quantum-noise limited readout electronics, achieved a total system noise of about 200\,mK or below, which corresponds to a background of roughly 4×1034\times 10^3 photons per second within the axion bandwidth. The combination of all those improvements provides unprecedented search performance, imposing the most stringent exclusion limits on axion--photon coupling in this frequency range to date. These results also suggest an experimental capability suitable for highly-sensitive searches for axion dark matter above 1\,GHz.

Keywords

Cite

@article{arxiv.2402.12892,
  title  = {Extensive search for axion dark matter over 1\,GHz with CAPP's Main Axion eXperiment},
  author = {Saebyeok Ahn and JinMyeong Kim and Boris I. Ivanov and Ohjoon Kwon and HeeSu Byun and Arjan F. van Loo and SeongTae Par and Junu Jeong and Soohyung Lee and Jinsu Kim and Çağlar Kutlu and Andrew K. Yi and Yasunobu Nakamura and Seonjeong Oh and Danho Ahn and SungJae Bae and Hyoungsoon Choi and Jihoon Choi and Yonuk Chong and Woohyun Chung and Violeta Gkika and Jihn E. Kim and Younggeun Kim and Byeong Rok Ko and Lino Miceli and Doyu Lee and Jiwon Lee and Ki Woong Lee and MyeongJae Lee and Andrei Matlashov and Pallavi Parashar and Taehyeon Seong and Yun Chang Shin and Sergey V. Uchaikin and SungWoo Youn and Yannis K. Semertzidis},
  journal= {arXiv preprint arXiv:2402.12892},
  year   = {2024}
}

Comments

A detailed axion dark matter article with 27 pages, 22 figures