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Relaxation times for Bose-Einstein condensation in axion miniclusters

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

We study the Bose condensation of scalar dark matter in the presence of both gravitational and self-interactions. Axions and other scalar dark matter in gravitationally bound miniclusters or dark matter halos are expected to condense into Bose-Einstein condensates called Bose stars. This process has been shown to occur through attractive self-interactions of the axion-like particles or through the field's self gravitation. We show that in the high-occupancy regime of scalar dark matter, the Boltzmann collision integral does not describe either gravitaitonal or self-interactions, and derive kinetic equations valid for these interactions. We use this formalism to compute relaxation times for the Bose-Einstein condensation, and find that condensation into Bose stars could occur within the lifetime of the universe. The self-interactions reduce the condensation time only when they are very strong.

fields

hep-ph 2

years

2026 2

verdicts

UNVERDICTED 2

representative citing papers

Yukawa-Screened Bose-Star Condensation

hep-ph · 2026-05-22 · unverdicted · novelty 3.0 · 2 refs

Yukawa screening in the YSP system broadens Bose-star profiles and delays condensation, matching a screened kinetic formula after fitting one normalization parameter.

citing papers explorer

Showing 2 of 2 citing papers.

  • Spin Polarization of Proca Stars Formed by Gravitational Bose--Einstein Condensation hep-ph · 2026-07-06 · unverdicted · none · ref 35 · internal anchor

    Gravitationally condensed Proca stars are sizably but not maximally spin-polarized, with core spin set by random elliptical polarization of the dominant mode rather than a universal fraction.

  • Yukawa-Screened Bose-Star Condensation hep-ph · 2026-05-22 · unverdicted · none · ref 28 · 2 links

    Yukawa screening in the YSP system broadens Bose-star profiles and delays condensation, matching a screened kinetic formula after fitting one normalization parameter.