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Axion search with quantum nondemolition detection of magnons

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arxiv 2102.08764 v4 pith:LWIJUUYQ submitted 2021-02-17 hep-ex astro-ph.COhep-phphysics.ins-detquant-ph

classification hep-exastro-ph.COhep-phphysics.ins-detquant-ph
keywords axiondetectionferrimagneticinteractionnondemolitionquantumqubitspin
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The axion provides a solution for the strong CP problem and is one of the leading candidates for dark matter. This paper proposes an axion detection scheme based on quantum nondemolition detection of magnon, i.e., quanta of collective spin excitations in solid, which is expected to be excited by the axion-electron interaction predicted by the Dine-Fischer-Srednicki-Zhitnitsky (DFSZ) model. The prototype detector is composed of a ferrimagnetic sphere as an electronic spin target and a superconducting qubit. Both of these are embedded inside a microwave cavity, which leads to a coherent effective interaction between the uniform magnetostatic mode in the ferrimagnetic crystal and the qubit. An upper limit for the coupling constant between an axion and an electron is obtained as $g_{aee}<2.6\times10^{-6}$ at the 95% confidence level for the axion mass of $33.117$$\mu$eV $<m_{a}<33.130$$\mu$eV.

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  1. Probing the axion-electron coupling at cavity experiments

    hep-ph 2025-07 conditional novelty 6.0 of 10

    Cavity walls radiate microwave photons when axion dark matter generates a chiral magnetic current at the conductor surface, turning existing haloscope data into a bound on the axion-electron coupling g_ae ≲ 10^-5.

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