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首页> 外文期刊>The Astrophysical journal >THE COYOTE UNIVERSE. II. COSMOLOGICAL MODELS AND PRECISION EMULATION OF THE NONLINEAR MATTER POWER SPECTRUM
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THE COYOTE UNIVERSE. II. COSMOLOGICAL MODELS AND PRECISION EMULATION OF THE NONLINEAR MATTER POWER SPECTRUM

机译:郊狼大学。二。非线性物质功率谱的宇宙学模型和精确模拟

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The power spectrum of density fluctuations is a foundational source of cosmological information. Precision cosmological probes targeted primarily at investigations of dark energy require accurate theoretical determinations of the power spectrum in the nonlinear regime. To exploit the observational power of future cosmological surveys, accuracy demands on the theory are at the 1% level or better. Numerical simulations are currently the only way to produce sufficiently error-controlled predictions for the power spectrum. The very high computational cost of (precision) N-body simulations is a major obstacle to obtaining predictions in the nonlinear regime, while scanning over cosmological parameters. Near-future observations, however, are likely to provide a meaningful constraint only on constant dark energy equation of state, "wCDM", cosmologies. In this paper, we demonstrate that a limited set of only 37 cosmological models—the "Coyote Universe" suite—can be used to predict the nonlinear matter power spectrum to 1% over a prior parameter range set by current cosmic microwave background observations. This paper is the second in a series of three, with the final aim to provide a high-accuracy prediction scheme for the nonlinear matter power spectrum for wCDM cosmologies.
机译:密度波动的功率谱是宇宙学信息的基础。主要用于暗能量研究的精密宇宙学探针需要在非线性条件下对功率谱进行准确的理论确定。为了利用未来宇宙学调查的观测能力,对该理论的准确性要求为1%或更高。当前,数值模拟是生成功率谱的充分误差控制的预测的唯一方法。 (精确)N体模拟的很高的计算成本是在扫描宇宙学参数时获得非线性状态中的预测的主要障碍。但是,不久的将来的观察可能仅对恒定的暗能量状态方程“ wCDM”宇宙学提供有意义的约束。在本文中,我们证明了只有37个宇宙模型的有限集合(“土狼宇宙”套件)可用于将当前宇宙微波本底观测设定的先前参数范围内的非线性物质功率谱预测为1%。本文是这三部分中的第二部分,其最终目的是为wCDM宇宙学提供一种非线性物质功率谱的高精度预测方案。

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