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Effective dark energy equation of state in interacting dark energy models

机译:相互作用的暗能量模型中的有效暗能量状态方程

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摘要

In models where dark matter and dark energy interact non-minimally, the total amount of matter in a fixed comoving volume may vary from the time of recombination to the present time due to energy transfer between the two components. This implies that, in interacting dark energy models, the fractional matter density estimated using the cosmic microwave background assuming no interaction between dark matter and dark energy will in general be shifted with respect to its true value. This may result in an incorrect determination of the equation of state of dark energy if the interaction between dark matter and dark energy is not properly accounted for, even if the evolution of the Hubble parameter as a function of redshift is known with arbitrary precision. In this Letter we find an exact expression, as well as a simple analytical approximation, for the evolution of the effective equation of state of dark energy, assuming that the energy transfer rate between dark matter and dark energy is described by a simple two-parameter model. We also provide analytical examples where non-phantom interacting dark energy models mimic the background evolution and primary cosmic microwave background anisotropies of phantom dark energy models.
机译:在暗物质和暗能量非最小相互作用的模型中,由于两种组分之间的能量转移,固定复合容积中的物质总量可能从重组时间到当前时间有所不同。这意味着,在相互作用的暗能量模型中,使用宇宙微波背景估计的物质密度(假设暗物质和暗能量之间没有相互作用)通常会相对于其真实值发生偏移。如果没有适当地考虑暗物质和暗能量之间的相互作用,这可能导致对暗能量状态方程的错误确定,即使以任意精度已知哈勃参数随红移的变化。在这封信中,我们假设暗物质和暗能量之间的能量转移速率由一个简单的两参数描述,它为暗能量的有效状态方程的演化找到了一个精确的表达式以及一个简单的分析近似值。模型。我们还提供了分析示例,其中非幻影相互作用的暗能量模型模仿了幻影暗能量模型的背景演化和主要宇宙微波背景各向异性。

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