论文标题

互补的宇宙学模拟

Complementary Cosmological Simulations

论文作者

Rácz, Gábor, Kiessling, Alina, Csabai, István, Szapudi, István

论文摘要

宇宙差异限制了宇宙学N体模拟的准确性,从而引入了统计数据,例如功率谱,光晕质量功能或宇宙剪切。我们提供了新的方法来测量和减少现有模拟和新模拟中宇宙差异的影响。我们使用带有相匹配幅度的相移初始条件进行了一对模拟。我们设置了傅立叶模式的初始振幅,以确保对套的平均功率谱等于线性理论的宇宙平均功率谱。一对此类模拟的平均功率谱与最新方法的估计非线性光谱保持一致。我们还表明,可以使用原始模拟的互补对估算宇宙差异对涉及宇宙模拟的任何分析的影响。为了证明我们的新技术的有效性,我们模拟了一对原始的千年运行,并量化了宇宙方差影响其功率谱的程度。原始和互补的千年模拟的平均功率光谱能够直接解决Baryon声学振荡特征。

Cosmic variance limits the accuracy of cosmological N-body simulations, introducing bias in statistics such as the power spectrum, halo mass function, or the cosmic shear. We provide new methods to measure and reduce the effect of cosmic variance in existing and new simulations. We ran pairs of simulations using phase-shifted initial conditions with matching amplitudes. We set the initial amplitudes of the Fourier modes to ensure that the average power spectrum of the pair is equal to the cosmic mean power spectrum from linear theory. The average power spectrum of a pair of such simulations remains consistent with the estimated nonlinear spectra of the state-of-the-art methods even at late times. We also show that the effect of cosmic variance on any analysis involving a cosmological simulation can be estimated using the complementary pair of the original simulation. To demonstrate the effectiveness of our novel technique, we simulated a complementary pair of the original Millennium run and quantified the degree to which cosmic variance affected its the power spectrum. The average power spectrum of the original and complementary Millennium simulation was able to directly resolve the baryon acoustic oscillation features.

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