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Formation of solitons and their transitions in scalar-field dark matter models with a non-polynomial self-interaction potential

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arxiv 2412.02519 v1 pith:IFUPB5UC submitted 2024-12-03 astro-ph.CO

classification astro-ph.CO
keywords darkmatterformationfuzzypotentialself-interactionself-interactionssoliton
verification ladder T0 review T1 audit T2 compute T3 formal
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We study the formation of solitons inside scalar-field dark matter halos with a non-polynomial self-interaction potential. We consider a self-interaction potential that is quartic in the scalar field in the low-density regime but saturates at large densities. This mimics the behaviour of axion monodromy potentials. We concentrate on the semi-classical regime, where the de Broglie wavelength is much smaller than the size of the system. We find that depending on the strength and scale of the self-interactions, the system can form solitons of the Thomas-Fermi type (dominated by self-interactions) or of the Fuzzy Dark Matter type (dominated by the quantum pressure). The system can also display transitions from a Thomas-Fermi soliton to a Fuzzy Dark Matter soliton as the former becomes unstable. We show that these behaviours can be understood from a simple Gaussian ansatz. We find that even in cases where the self-interactions are always subdominant they can play a critical role, by providing a small density boost that is enough to generate the seed for the formation of a Fuzzy Dark Matter soliton at much later times. We also point out that the intuition derived from a hydrodynamical picture can be misleading in regimes where wave effects are important.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Non-relativistic effective theories for fields with general potentials and their implications for cosmology

    astro-ph.CO 2025-07 unverdicted novelty 6.0 of 10

    Derives non-relativistic effective field theories for scalar fields with arbitrary potentials, provides an effective fluid description, and extends the formalism to cosmology for ultra-light dark matter models.

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