English

Cosmological structure formation in scalar field dark matter with repulsive self-interaction: The Incredible Shrinking Jeans Mass

Cosmology and Nongalactic Astrophysics 2021-11-04 v2 Astrophysics of Galaxies High Energy Physics - Phenomenology

Abstract

Scalar Field Dark Matter (SFDM) comprised of ultralight (1022\gtrsim 10^{-22} eV) bosons is an alternative to standard, collisionless Cold Dark Matter (CDM) that is CDM-like on large scales but inhibits small-scale structure formation. As a Bose-Einstein condensate, its free-field ("fuzzy") limit (FDM) suppresses structure below the de Broglie wavelength, λdeB\lambda_\text{deB}, creating virialized haloes with central cores of radius λdeB\sim\lambda_\text{deB}, surrounded by CDM-like envelopes, and a halo mass function (HMF) with a sharp cut-off on small scales. With a strong enough repulsive self-interaction (SI), structure is inhibited, instead, below the Thomas-Fermi (TF) radius, RTFR_\text{TF} (the size of an SI-pressure-supported (n=1n=1)-polytrope), when RTF>λdeBR_\text{TF} > \lambda_\text{deB}. Previously, we developed tools to describe SFDM dynamics on scales above λdeB\lambda_\text{deB} and showed that SFDM-TF haloes formed by Jeans-unstable collapse from non-cosmological initial conditions have RTFR_\text{TF}-sized cores, surrounded by CDM-like envelopes. Revisiting SFDM-TF in the cosmological context, we simulate halo formation by cosmological infall and collapse, and derive its transfer function from linear perturbation theory to produce cosmological initial conditions and predict statistical measures of structure formation, such as the HMF. Since FDM and SFDM-TF transfer functions both have small-scale cut-offs, we can align them to let observational constraints on FDM proxy for SFDM-TF, finding FDM with particle masses 1m/(1022 eV/c2)301 \lesssim m/(10^{-22} \text{ eV}/c^2) \lesssim 30 corresponds to SFDM-TF with 10RTF/(1 pc)110 \gtrsim R_\text{TF}/(1 \text{ pc}) \gtrsim 1, favoring sub-galactic (sub-kpc) core-size. The SFDM-TF HMF cuts off gradually, however, leaving more small-mass haloes: its Jeans mass shrinks so fast, scales filtered early can still recover and grow!

Keywords

Cite

@article{arxiv.2106.13244,
  title  = {Cosmological structure formation in scalar field dark matter with repulsive self-interaction: The Incredible Shrinking Jeans Mass},
  author = {Paul R. Shapiro and Taha Dawoodbhoy and Tanja Rindler-Daller},
  journal= {arXiv preprint arXiv:2106.13244},
  year   = {2021}
}

Comments

30 pages, 10 figures, accepted by MNRAS 09/22/21, comments welcome