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The matter power spectrum as a test of cosmological models

机译:物质功率谱作为宇宙模型的测试

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Initial conditions for the evolution of energy density perturbations are generally specified at some initial time very early during the radiation dominated regime. If, instead, the amplitude of density perturbations is specified at horizon crossing like in the Harrison-Zeldovich prescription, the equations of evolution have to be solved during the subsequent subhorizon evolution. Using this ansatz we show how to construct observables such as the matter power spectrum of generic dark energy models from the power spectrum of a ACDM model without the need of solving in full the dynamical equations describing the evolution of all energy density perturbations. This saves a lot of effort. Our approach allows to make model predictions of observable quantities that can be expressed in terms of the matter power spectrum alone, such as the amplitude of matter fluctuations, peculiar velocities, cosmic microwave background temperature anisotropies on large angular scales, or the weak lensing convergence spectrum.
机译:能量密度扰动演化的初始条件通常在辐射主导的制度期间很早的一些初始时间指定。如果代替,在Harrison-Zeldovich处方中的Horizo​​ n Crossing中指定了密度扰动的幅度,则必须在随后的脱色演变期间求解进化方程。使用此ANSATZ,我们展示了如何从ACDM模型的功率谱构建诸如通用暗能模型的物质功率谱,而无需求解描述所有能量密度扰动的演变的动态方程。这节省了很多努力。我们的方法允许制造可观察量的模型预测,可单独的物质功率谱表示,例如物质波动,特殊速度,宇宙微波背景温度各向异性在大角度尺度上的幅度,或弱镜头会聚谱的幅度。

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