On the Random Motion of Nuclear Objects in a Fuzzy Dark Matter Halo
arXiv:2105.05268 · doi:10.3847/1538-4357/ac043f
Abstract
Fuzzy Dark Matter (FDM), consisting of ultralight bosons (), is an intriguing alternative to Cold Dark Matter. Numerical simulations that solve the Schrödinger-Poisson (SP) equation show that FDM halos consist of a central solitonic core, which is the ground state of the SP equation, surrounded by an envelope of interfering excited states. These excited states also interfere with the soliton, causing it to oscillate and execute a confined random walk with respect to the halo center of mass. Using high-resolution numerical simulations of a FDM halo with in isolation, we demonstrate that the wobbling, oscillating soliton gravitationally perturbs nuclear objects, such as supermassive black holes or dense star clusters, causing them to diffuse outwards. In particular, we show that, on average, objects with mass of the soliton mass () are expelled from the soliton in , after which they continue their outward diffusion due to gravitational interactions with the soliton and the halo granules. More massive objects (), while executing a random walk, remain largely confined to the soliton due to dynamical friction. We also present an effective treatment of the diffusion, based on kinetic theory, that accurately reproduces the outward motion of low mass objects and briefly discuss how the observed displacements of star clusters and active galactic nuclei from the centers of their host galaxies can be used to constrain FDM.
20 pages, 9 figures, minor revisions, accepted for publication in ApJ
References in corpus (17)
- Ultralight scalars as cosmological dark matter
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- Cosmic Structure as the Quantum Interference of a Coherent Dark Wave
- The ACS Virgo Cluster Survey. VIII. The Nuclei of Early-Type Galaxies
- Understanding the Core-Halo Relation of Quantum Wave Dark Matter, DM, from 3D Simulations
- A search for ultra-light axions using precision cosmological data
- Milky Way Satellite Census. III. Constraints on Dark Matter Properties from Observations of Milky Way Satellite Galaxies
- Axion dark matter, solitons, and the cusp-core problem
- Current status of direct dark matter detection experiments
- Lyman-alpha Constraints on Ultralight Scalar Dark Matter: Implications for the Early and Late Universe
- M31 Satellite Masses Compared to LCDM Subhaloes
- Oscillations and Random Walk of the Soliton Core in a Fuzzy Dark Matter Halo
- Fundamental physics with the Hubble Frontier Fields: constraining Dark Matter models with the abundance of extremely faint and distant galaxies
- Soliton Oscillations and Revised Constraints from Eridanus II of Fuzzy Dark Matter
- Don't cross the streams: caustics from Fuzzy Dark Matter
- Landau equation for self-gravitating classical and quantum particles: Application to dark matter
- Ejection of supermassive black holes and implications for merger rates in fuzzy dark matter haloes
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