arXiv:1506.01247·v3·General Relativity and Quantum Cosmology
Arrow of time in dissipationless cosmology
Varun Sahni🇮🇳 · Yuri Shtanov🇺🇦 · Aleksey Toporensky🇷🇺
Abstract
It is generally believed that a cosmological arrow of time must be associated with entropy production. Indeed, in his seminal work on cyclic cosmology, Tolman introduced a viscous fluid in order to make successive expansion/contraction cycles larger than previous ones, thereby generating an arrow of time. However, as we demonstrate in this letter, the production of entropy is not the only means by which a cosmological arrow of time may emerge. Remarkably, systems which are dissipationless may nevertheless demonstrate a preferred direction of time provided they possess attractors. An example of a system with well defined attractors is scalar-field driven cosmology. In this case, for a wide class of potentials (especially those responsible for inflation), the attractor equation of state during expansion can have the form , and during contraction . If the resulting cosmology is cyclic, then the presence of cosmological hysteresis, during successive cycles, causes an arrow of time to emerge in a system which is formally dissipationless. An important analogy is drawn between the arrow of time in cyclic cosmology and an arrow of time in an -body system of gravitationally interacting particles. We find that, like the -body system, a cyclic universe can evolve from a single past into two futures with oppositely directed arrows of time.
Comments: 19 pages, 6 figures. Matches published version in Class. Quantum Grav. 32 (2015) 182001 (Fast Track Communication)