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We propose a scenario in which a strong Peccei-Quinn (PQ) symmetry breaking in the early universe results in large inhomogeneities of the initial QCD axion field value, leading to the formation of very dense axion bubbles.
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L. Visinelli and P. Gondolo, “Dark Matter Axions Revisited,” Phys.Rev
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X.-B. Wu, F. Wang, X. Fan, W. Yi, W. Zuo, F. Bian, L. Jiang, I. D. McGreer, R. Wang, J. Yang, and et al., “An ultraluminous quasar with a twelve-billion-solar-mass black hole at redshift 6.30,” Nature
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2016
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G. Grilli di Cortona, E. Hardy, J. Pardo Vega, and G. Villadoro, “The QCD axion, precisely,” JHEP
2016
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J.-O. Gong and N. Kitajima, “Distribution of primordial black holes and 21cm signature,” JCAP
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