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Cosmological Implications of QGP Bulk Viscosity

High Energy Physics - Phenomenology 2016-12-15 v2 General Relativity and Quantum Cosmology High Energy Physics - Theory Nuclear Theory

Abstract

Recent studies of the hot QCD matter indicate that the bulk viscosity (ζ\zeta) of quark-gluon plasma (QGP) rises sharply near the critical point of the QCD phase transition. In this work, we show that such a sharp rise of the bulk viscosity will lead to an effective negative pressure near the critical temperature, TcT_{c} which in turn drives the Universe to inflate. This inflation has a natural graceful exist when the viscous effect evanesce. We estimate that, depending upon the peak value of ζ\zeta, universe expands by a factor of 1010 to 8080 times in a very short span (Δt108\Delta t\sim 10^{-8} seconds). Another important outcome of the bulk viscosity dominated dynamics is the cavitation of QGP around T1.5TcT \sim 1.5T_{c}. This would lead to the phenomenon of formation of cavitation bubbles within the QGP phase. The above scenario is independent of the order of QCD phase transition. We delineate some of the important cosmological consequences of the inflation and the cavitation.

Cite

@article{arxiv.1611.00701,
  title  = {Cosmological Implications of QGP Bulk Viscosity},
  author = {Sampurn Anand and Abhishek Atreya and Jitesh R. Bhatt},
  journal= {arXiv preprint arXiv:1611.00701},
  year   = {2016}
}

Comments

This paper has been withdrawn. The results presented were artifacts of an error in the numerical code

R2 v1 2026-06-22T16:39:59.916Z