English

Cosmological Constraints on Tachyon Matter

High Energy Physics - Theory 2009-11-07 v5 General Relativity and Quantum Cosmology

Abstract

We examine whether tachyon matter is a viable candidate for the cosmological dark matter. First, we demonstrate that in order for the density of tachyon matter to have an acceptable value today, the magnitude of the tachyon potential energy at the onset of rolling must be finely tuned. For a tachyon potential V(T)MPl4exp(T/τ)V(T)\sim M_{Pl}^4\exp(-T/\tau), the tachyon must start rolling at T60τT\simeq 60\tau in order for the density of tachyon matter today to satisfy ΩT,01\Omega_{T,0}\sim 1, provided that standard big bang cosmology begins at the same time as the tachyon begins to roll. In this case, the value of ΩT,0\Omega_{T,0} is exponentially sensitive to T/τT/\tau at the onset of rolling, so smaller T/τT/\tau is unacceptable, and larger T/τT/\tau implies a tachyon density that is too small to have interesting cosmological effects. If instead the universe undergoes a second inflationary epoch after the tachyon has already rolled considerably, then the tachyon can begin with TT near zero, but the increase of the scale factor during inflation must still be finely tuned in order for ΩT,01\Omega_{T,0} \sim 1. Second, we show that tachyon matter, unlike quintessence, can cluster gravitationally on very small scales. If the starting value of T/τT/\tau is tuned finely enough that ΩT,01\Omega_{T,0}\sim 1, then tachyon matter clusters more or less identically to pressureless dust. Thus, if the fine-tuning problem can be explained, tachyon matter is a viable candidate for cosmological dark matter.

Keywords

Cite

@article{arxiv.hep-th/0205003,
  title  = {Cosmological Constraints on Tachyon Matter},
  author = {Gary Shiu and Ira Wasserman},
  journal= {arXiv preprint arXiv:hep-th/0205003},
  year   = {2009}
}

Comments

14 pages, additional references, typos corrected

R2 v1 2026-07-22T15:10:31.350Z