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Loop quantum cosmology with a non-commutative quantum deformed photon gas
Authors:Yunxin Ye  Tiberiu Harko  Shi-Dong Liang
Affiliation:1.School of Physics,Sun Yat-Sen University,Guangzhou,People’s Republic of China;2.Department of Physics,Babes-Bolyai University,Cluj-Napoca,Romania;3.Department of Mathematics,University College London,London,UK;4.State Key Laboratory of Optoelectronic Material and Technology, and Guangdong Province Key Laboratory of Display Material and Technology,Sun Yat-Sen University,Guangzhou,People’s Republic of China
Abstract:The non-commutativity of the space-time had important implications for the very early Universe, when its size was of the order of the Planck length. An important implication of this effect is the deformation of the standard dispersion relation of special relativity. Moreover, in the Planck regime gravity itself must be described by a quantum theory. We consider the implications of the modified dispersion relations for a photon gas, filling the early Universe, in the framework of loop quantum cosmology, a theoretical approach to quantum gravity. We consider three types of deformations of the dispersion relations of the photon gas, from which we obtain the Planck scale corrections to the energy density and pressure. The cosmological implications of the modified equations of state are explored in detail for all radiation models in the framework of the modified Friedmann equation of loop quantum cosmology. By numerically integrating the evolution equations we investigate the evolution of the basic cosmological parameters (scale factor, Hubble function, radiation temperature, and deceleration parameter) for a deformed photon gas filled Universe. In all models the evolution of the Universe shows the presence of a (nonsingular) bounce, corresponding to the transition from a contracting to an expanding phase.
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