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Nonclassicality of axion-like dark matter through gravitational self-interactions

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arxiv 2105.13451 v2 pith:G4TJC2N5 submitted 2021-05-27 astro-ph.CO cond-mat.otherhep-phquant-ph

classification astro-ph.COcond-mat.otherhep-phquant-ph
keywords classicalsqueezingalpsaxion-likedarkdescriptionequationfield
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abstract

Axion-like particles (ALPs) are promising dark matter candidates. They are typically described by a classical field, motivated by large phase space occupation numbers. Here we show that such a description is accompanied by a quantum effect: squeezing due to gravitational self-interactions. For a typical QCD axion today, the onset of squeezing is reached on $\mathrm{\mu s}$-scales and grows over millennia. Thus within the usual models based on the classical Schr\"odinger-Poisson equation, a type of Gross-Pitaevskii equation, any viable ALP is nonclassical. We also show that squeezing may be relevant on the scales of other self-gravitating systems such as galactic haloes, or solitonic cores. Conversely, our results highlight the incompleteness and limitations of the classical single field description of ALPs.

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    astro-ph.CO 2025-07 unverdicted novelty 1.0 of 10

    A review of fuzzy dark matter that surveys the models, wave phenomenology, numerical methods, and current observational mass constraints of ultralight dark matter.

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