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Soliton Formation and the Core-Halo Mass Relation: An Eigenstate Perspective

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arxiv 2212.09349 v2 pith:SFNKLQ7V submitted 2022-12-19 astro-ph.CO

classification astro-ph.CO
keywords masscore-halomergersrelationshipcorehalohalosuldm
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UltraLight Dark Matter (ULDM) is an axion-like dark matter candidate with an extremely small particle mass. ULDM halos consist of a spherically symmetric solitonic core and an NFW-like skirt. We simulate halo creation via soliton mergers and use these results to explore the core-halo mass relation. We calculate the eigenstates of the merged halos and use these to isolate the solitonic core and calculate its relative contribution to the halo mass. We compare this approach to using a fitting function to isolate the core and find a difference in masses up to 30%. We analyze three families of simulations: equal-mass mergers, unequal-mass mergers, and halos with a two-step merger history. Setting the halo mass to the initial mass in the simulation does not yield a consistent core-halo relationship. Excluding material "ejected" by the collision yields a core-halo relationship with a slope of 1/3 for simultaneous mergers and roughly 0.4 for two-step mergers. Our findings suggest there is no universal core-halo mass relationship for ULDM and shed light on the differing results for the core-halo relationship previously reported in the literature.

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Cited by 2 Pith papers

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

  1. Supermassive Binaries in Ultralight Dark Matter Solitons

    astro-ph.CO 2025-04 conditional novelty 6.0 of 10

    High-resolution simulations show that a symmetric SMBH binary decays faster in a ULDM soliton than semi-analytic estimates predict, due to soliton pinching, with implications for the final parsec problem and PTA gravi...

  2. Bracketing the soliton-halo relation of ultralight dark matter

    astro-ph.CO 2025-04 conditional novelty 5.0 of 10

    Numerical simulations and analytic equivalences show that the soliton-halo relation for ultralight dark matter is bracketed by the 1/2 relation as a lower bound and the 1/3 relation as an upper bound.

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