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SKEWNESS OF COSMIC MICROWAVE BACKGROUND TEMPERATURE FLUCTUATIONS DUE TO NONLINEAR GRAVITATIONAL INSTABILITY

机译:非线性重力失稳引起的宇宙微波背景温度波动的偏斜

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摘要

Skewness of temperature fluctuations of the cosmic microwave background produced by initially Gaussian adiabatic perturbations with the flat (Harrison-Zeldovich) spectrum, which arises as a result of nonlinear corrections to a gravitational potential at the matter-dominated stage, is calculated quantitatively. For the standard cold dark matter model, the effect appears to be smaller than expected previously and lies below the cosmic variance limit even for small angles. The sign of the skewness is opposite to that of the skewness of density perturbations.
机译:定量计算了最初由高斯绝热扰动产生的宇宙微波背景温度波动的偏度,该绝热扰动是由平坦的(Harrison-Zeldovich)光谱引起的,这是由于在物质主导阶段对引力进行了非线性校正。对于标准的冷暗物质模型,该影响似乎比以前预期的要小,即使对于小角度,其效果也低于宇宙方差极限。偏度的符号与密度摄动偏度的符号相反。

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