English

Ultralight scalars as cosmological dark matter

Cosmology and Nongalactic Astrophysics 2017-03-08 v2 Astrophysics of Galaxies High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

An intriguing alternative to cold dark matter (CDM) is that the dark matter is a light ( m1022m \sim 10^{-22} eV) boson having a de Broglie wavelength λ1\lambda \sim 1 kpc, often called fuzzy dark matter (FDM). We describe the arguments from particle physics that motivate FDM, review previous work on its astrophysical signatures, and analyze several unexplored aspects of its behavior. In particular, (i) FDM halos smaller than about 107(m/1022eV)3/2M10^7 (m/10^{-22} {\rm eV})^{-3/2} M_\odot do not form. (ii) FDM halos are comprised of a core that is a stationary, minimum-energy configuration called a "soliton", surrounded by an envelope that resembles a CDM halo. (iii) The transition between soliton and envelope is determined by a relaxation process analogous to two-body relaxation in gravitating systems, which proceeds as if the halo were composed of particles with mass ρλ3\sim \rho\lambda^3 where ρ\rho is the halo density. (iv) Relaxation may have substantial effects on the stellar disk and bulge in the inner parts of disk galaxies. (v) Relaxation can produce FDM disks but an FDM disk in the solar neighborhood must have a half-thickness of at least 300(m/1022eV)2/3300 (m/10^{-22} {\rm eV})^{-2/3} pc. (vi) Solitonic FDM sub-halos evaporate by tunneling through the tidal radius and this limits the minimum sub-halo mass inside 30 kpc of the Milky Way to roughly 108(m/1022eV)3/2M10^8 (m/10^{-22} {\rm eV})^{-3/2} M_\odot. (vii) If the dark matter in the Fornax dwarf galaxy is composed of CDM, most of the globular clusters observed in that galaxy should have long ago spiraled to its center, and this problem is resolved if the dark matter is FDM.

Keywords

Cite

@article{arxiv.1610.08297,
  title  = {Ultralight scalars as cosmological dark matter},
  author = {Lam Hui and Jeremiah P. Ostriker and Scott Tremaine and Edward Witten},
  journal= {arXiv preprint arXiv:1610.08297},
  year   = {2017}
}

Comments

37 pages, 3 figures. Additional references and discussions on clusters and the soliton-to-host-mass relation. Accepted for publication in PRD

R2 v1 2026-06-22T16:32:25.553Z