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Thermodynamics in loop quantum cosmology with non-canonical scalar field model

机译:具有非规范标量场模型的环路量子宇宙中的热力学

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摘要

The cosmological scenario is built up within the framework of scalar field model possessing a noncanonical kinetic term in loop quantum gravity. The noncanonical scalar field is permitted to interact with dark matter field by assuming a specific form of coupling term. The equation of state parameter is set to be constant as well as variable (Chevallier-Polarski-Linder parametrization) and evaluated the behavior of universe through deceleration parameter and weak energy condition. These parameters favor the accelerated expansion of the universe for three values of equation of state parameter in both cases allowed by observational data. The squared speed of sound leads to the stability of the underlying models in both forms of equation of state parameter. Moreover, the validity of generalized second law of thermodynamics is analyzed by using first law of thermodynamics and assume the universe to be enclosed by apparent horizon. The Bekenstein, logarithmic and power-law entropy is being considered as entropy of horizon. The thermodynamic equilibrium condition is also discussed for all three cases of entropies. The generalized second law of thermodynamics and thermal equilibrium condition is satisfied for all the three types of entropies.
机译:宇宙学情景建立在标量场模型的框架内,该框架具有在环量子重力中具有非共同动力学术语的标量场模型。允许通过假设特定形式的耦合项来与暗物质领域交互非共鸣的标量场。状态参数的等式设置为恒定以及变量(Chevallier-Polarski-Linder参数化),并通过减速参数和弱能量条件评估宇宙的行为。这些参数有利于在观察数据允许的两种情况下加速宇宙扩展的状态参数的三个方程值。 Squared Sound速度导致状态参数的两种形式的底层模型的稳定性。此外,通过使用第一热力学定律分析了热力学的广义第二律法的有效性,并假设宇宙被明显的地平线封闭。 Bekenstein,对数和幂律熵被视为地平线的熵。对于所有三种熵案也讨论了热力学平衡条件。所有三种类型的熵都满足了全动力学和热平衡条件的广义第二律。

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