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Axion Dark Matter Detection by Superconducting Resonant Frequency Conversion

Authors :
Berlin, Asher
D'Agnolo, Raffaele Tito
Ellis, Sebastian A. R.
Nantista, Christopher
Neilson, Jeffrey
Schuster, Philip
Tantawi, Sami
Toro, Natalia
Zhou, Kevin
Berlin, Asher
D'Agnolo, Raffaele Tito
Ellis, Sebastian A. R.
Nantista, Christopher
Neilson, Jeffrey
Schuster, Philip
Tantawi, Sami
Toro, Natalia
Zhou, Kevin
Publication Year :
2019

Abstract

We propose an approach to search for axion dark matter with a specially designed superconducting radio frequency cavity, targeting axions with masses $m_a \lesssim 10^{-6} \text{ eV}$. Our approach exploits axion-induced transitions between nearly degenerate resonant modes of frequency $\sim$ GHz. A scan over axion mass is achieved by varying the frequency splitting between the two modes. Compared to traditional approaches, this allows for parametrically enhanced signal power for axions lighter than a GHz. The projected sensitivity covers unexplored parameter space for QCD axion dark matter for $10^{-8} \text{ eV} \lesssim m_a \lesssim10^{-6} \text{ eV}$ and axion-like particle dark matter as light as $m_a \sim 10^{-14} \text{ eV}$.<br />Comment: 30 pages, 7 figures

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1138915692
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1007.JHEP07(2020)088