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- W4307443311 abstract "We study the direct radiation excited by oscillating axion (or axion-like particle) dark matter in a homogenous magnetic field and its detection scheme. We concretely derive the analytical expression of the axion-induced radiated power for a cylindrical uniform magnetic field. In the long wave limit, the radiation power is proportional to the square of the B-field volume and the axion mass $m_a$, whereas it oscillate as approaching the short wave limit and the peak powers are proportional to the side area of the cylindrical magnetic field and $m_a^{-2}$. The maximum power locates at mass $m_asimfrac{3pi}{4R}$ for fixed radius $R$. Based on this characteristic of the power, we discuss a scheme to detect the axions in the mass range $1-10^4$,neV, where four detectors of different bandwidths surround the B-field. The expected sensitivity for $m_alesssim1,mu$eV under typical-parameter values can far exceed the existing constraints." @default.
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- W4307443311 date "2022-10-27" @default.
- W4307443311 modified "2023-10-14" @default.
- W4307443311 title "Radiation emitted from axion dark matter in a homogeneous magnetic field and possibilities for detection" @default.
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- W4307443311 doi "https://doi.org/10.1103/physrevd.106.075026" @default.
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