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首页> 外文期刊>The Astrophysical journal >PERTURBATION THEORY RELOADED: ANALYTICAL CALCULATION OF NONLINEARITY IN BARYONIC OSCILLATIONS IN THE REAL-SPACE MATTER POWER SPECTRUM
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PERTURBATION THEORY RELOADED: ANALYTICAL CALCULATION OF NONLINEARITY IN BARYONIC OSCILLATIONS IN THE REAL-SPACE MATTER POWER SPECTRUM

机译:扰动理论的重装:实地物质功率谱中重子振荡的非线性分析计算

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We compare the nonlinear matter power spectrum in real space calculated analytically from third-order perturbation theory with N-body simulations at 1 < z < 6. We find that the perturbation theory prediction agrees with the simulations to better than 1% accuracy in the weakly nonlinear regime in which the dimensionless power spectrum, Δ~2(k) = k~3P(k)/2π~2, which approximately gives the variance of the matter density field at a given k, is less than 0.4. While the baryonic acoustic oscillation features are preserved in the weakly nonlinear regime at z > 1, the shape of oscillations is distorted from the linear theory prediction. Nevertheless, our results suggest that one can correct the distortion caused by nonlinearity almost exactly. We also find that perturbation theory, which does not contain any free parameters, provides a significantly better fit to the simulations than the conventional approaches based on empirical fitting functions to simulations. Future work should include perturbation theory calculations of nonlinearity in redshift-space distortion and halo biasing in the weakly nonlinear regime.
机译:我们将根据三阶摄动理论和N体模拟在1 1的弱非线性状态中得以保留,但振荡的形状却偏离了线性理论的预测。然而,我们的结果表明,人们可以几乎完全纠正由非线性引起的失真。我们还发现,不包含任何自由参数的摄动理论比基于经验拟合函数的传统方法对模拟的拟合效果更好。未来的工作应包括在红移空间畸变中的非线性扰动理论计算和在弱非线性状态中的光晕偏置。

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