English

Structure formation with scalar field dark matter: the field approach

Cosmology and Nongalactic Astrophysics 2021-02-09 v2 General Relativity and Quantum Cosmology

Abstract

We study the formation of structure in the Universe assuming that dark matter can be described by a scalar field Φ~\tilde{\Phi} with a potential V(Φ)=m2Φ~2/2+λΦ~4/4V(\Phi)=-\mathfrak{m}^{2}\tilde{\Phi}^{2}/2+\lambda\tilde{\Phi}^4/4. We derive the evolution equations of the scalar field in the linear regime of perturbations. We investigate the symmetry breaking and possibly a phase transition of this scalar field in the early Universe. At low temperatures, the scalar perturbations have an oscillating growing mode and therefore, this kind of dark matter could lead to the formation of gravitational structures. In order to study the nonlinear regime, we use the spherical collapse model and show that, in the quadratic potential limit, this kind of dark matter can form virialized structures. The main difference with the traditional Cold Dark Matter paradigm is that the formation of structure in the scalar field model can occur at earlier times. Thus, if the dark matter is of scalar field nature we expect to have large galaxies at high redshifts.

Keywords

Cite

@article{arxiv.1204.5255,
  title  = {Structure formation with scalar field dark matter: the field approach},
  author = {Juan Magaña and Tonatiuh Matos and Abril Suárez and F. J. Sánchez-Salcedo},
  journal= {arXiv preprint arXiv:1204.5255},
  year   = {2021}
}

Comments

30 pages, 16 figures, v2: accepted for publication in JCAP, two new figures, improved figures, minor clarifications, typos corrected, conclusions unchanged