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Cosmic Birefringence Triggered by Dark Matter Domination

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arxiv 2103.08153 v1 pith:ZKQUI642 submitted 2021-03-15 hep-ph astro-ph.CO

classification hep-phastro-ph.CO
keywords darkmassmatterconstanteffectivebirefringencecosmicdecay
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abstract

Cosmic birefringence is predicted if an axion-like particle (ALP) moves after the recombination. We show that this naturally happens if the ALP is coupled to the dark matter density because it then acquires a large effective mass after the matter-radiation equality. Our scenario applies to a broad range of the ALP mass $m_\phi \lesssim 10^{-28}$ eV, even smaller than the present Hubble constant. We give a simple model to realize this scenario, where dark matter is made of hidden monopoles, which give the ALP such a large effective mass through the Witten effect. The mechanism works if the ALP decay constant is of order the GUT scale without a fine-tuning of the initial misalignment angle. For smaller decay constant, the hidden monopole can be a fraction of dark matter. We also study the implications for the QCD axion, and show that the domain wall problem can be solved by the effective mass.

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Cited by 1 Pith paper

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  1. Planck PR4 (NPIPE) map-space cosmic birefringence

    astro-ph.CO 2025-02 conditional novelty 4.0 of 10

    A map-space stacking analysis of Planck PR4 maps finds a CMB polarization rotation angle of about 0.46 to 0.48 degrees, dominated by instrument calibration uncertainty and consistent with no parity-violating cosmic bi...

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