Author:
Bucciotti Bruno,Trincherini Enrico
Abstract
Abstract
Dark matter (DM) can consist of a scalar field so light that DM particles in the galactic halo are best described by classical waves. We investigate how these classical solutions are influenced by the presence of a non-rotating supermassive black hole at the center of the galaxy, using an analytical, albeit approximate, approach.Relying on this analytic control, we examine the consequences of imposing causal boundary conditions at the horizon, which are typically overlooked. First, we examine the scenario where the backreaction of dark matter can be neglected. The scalar field decays like a power law at large distances, thus endowing the black hole with “hair”. We derive solutions for the field profile over a wide range of parameters, including cases with rotating dark matter. As a by-product, we extract the dynamical Love numbers for scalar perturbations. Next, we determine the spectrum of bound states and their behaviour.Finally, we incorporate the self-gravity of the scalar field, with a focus on the situation where dark matter forms a soliton (boson star) at the center of the galaxy. We derive an analytical expression for the soliton at every distance from the center. With a solution that remains applicable even at horizon scales, we can reliably compute the accretion rate of the black hole.
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics
Reference57 articles.
1. E. Witten, Adventures in Physics and Math, Kyoto Prize lecture (2014) https://www.ias.edu/sites/default/files/sns/files/KyotoComemorativeLecture.pdf, https://www.kyotoprize.org/en/speech/?award-field=mathematical-sciences-en.
2. M.R. Baldeschi, R. Ruffini and G.B. Gelmini, On massive fermions and bosons in galactic halos, Phys. Lett. B 122 (1983) 221 [INSPIRE].
3. M.S. Turner, Coherent Scalar Field Oscillations in an Expanding Universe, Phys. Rev. D 28 (1983) 1243 [INSPIRE].
4. W.H. Press, B.S. Ryden and D.N. Spergel, Single Mechanism for Generating Large Scale Structure and Providing Dark Missing Matter, Phys. Rev. Lett. 64 (1990) 1084 [INSPIRE].
5. S.-J. Sin, Late time cosmological phase transition and galactic halo as Bose liquid, Phys. Rev. D 50 (1994) 3650 [hep-ph/9205208] [INSPIRE].
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