The Quantum Effect on Friedmann Equation in FRW Universe
Wei Zhang, Xiao‐Mei Kuang
Abstract
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Wei Zhang, Xiao‐Mei Kuang
Abstract
Open-access reader
We study the modified Friedmann equation in the Friedmann-Robertson-Walker universe with quantum effect. Our modified results mainly stem from the new entropy-area relation and the novel idea of Padmanabhan, who considers the cosmic space to be emerging as the cosmic time progresses, so that the expansion rate of the universe is determined by the difference of degrees of freedom between the holographic surface and the bulk inside. We also discuss the possibility of having bounce cosmological solution from the modified Friedmann equation in spatially flat geometry.
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We study the modified Friedmann equation in the Friedmann-Robertson-Walker universe with quantum effect. Our modified results mainly stem from the new entropy-area relation and the novel idea of Padmanabhan, who considers the cosmic space to be emerging as the cosmic time progresses, so that the expansion rate of the universe is determined by the difference of degrees of freedom between the holographic surface and the bulk inside. We also discuss the possibility of having bounce cosmological solution from the modified Friedmann equation in spatially flat geometry.
Key concepts: Friedmann–Lemaître–Robertson–Walker metric, Friedmann equations, Physics, Mathematical physics, Universe, Quantum cosmology, Quantum, Theoretical physics