Imprints of axion superradiance in the CMB

D. Blas, S. Witte
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引用次数: 11

Abstract

Light axions ($m_a \lesssim 10^{-10}$ eV) can form dense clouds around rapidly rotating astrophysical black holes via a mechanism known as rotational superradiance. The coupling between axions and photons induces a parametric resonance, arising from the stimulated decay of the axion cloud, which can rapidly convert regions of large axion number densities into an enormous flux of low-energy photons. In this work we consider the phenomenological implications of a superradiant axion cloud undergoing resonant decay. We show that the low energy photons produced from such events will be absorbed over cosmologically short distances, potentially inducing massive shockwaves that heat and ionize the IGM over Mpc scales. These shockwaves may leave observable imprints in the form of anisotropic spectral distortions or inhomogeneous features in the optical depth.
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CMB中轴子超辐射的印记
光轴子($m_a \lesssim 10^{-10}$ eV)可以通过一种称为旋转超辐射的机制在快速旋转的天体物理黑洞周围形成致密的云。轴子和光子之间的耦合引起了参数共振,这是由轴子云的受激衰变引起的,它可以迅速地将大轴子数密度的区域转化为巨大的低能光子通量。在这项工作中,我们考虑了经历共振衰变的超辐射轴子云的现象学含义。我们表明,这些事件产生的低能光子将在宇宙短距离内被吸收,可能会产生巨大的冲击波,在Mpc尺度上加热和电离IGM。这些冲击波可能以各向异性光谱畸变或光学深度不均匀特征的形式留下可观察到的印记。
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