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VELOCITY DISPERSION AND THE REDSHIFT-SPACE POWER SPECTRUM

机译:速度色散和空间漂移功率谱

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摘要

A large (N ~ 17 X 10~6) high-resolution N-body simulation of a standard cold dark matter (CDM) universe is used to investigate the effects of peculiar velocities on the power spectrum of galaxies in redshift space. The unprecedented dynamical range of the simulation code allows galaxy halos to be resolved in the numerical data while maintaining good statistical sampling on large scales. We present evidence that the redshift-space power spectrum P_s (k) can be related to its real-space counterpart by means of a simple filter function which reflects both small-scale velocity dispersion and large-scale linear flows. After transformation to redshift space, we find that the power spectrum is insensitive to the normalization of the CDM model at scales below 20 h~(-1) Mpc. Hence P_s (k) does not provide an unambiguous cosmological constraint at small scales. Nonetheless, it is significant that the redshift-space power spectra from CDM models with two different normalizations both compare remarkably well with results from the galaxies in the IRAS 1.2 Jy survey (Fisher et al.) on scales between 1 and 50 h~(-1) Mpc. By excluding a fraction of the most tightly bound halos, we create a galaxy catalog with 80% of the original objects in the lower normalization model that matches both the IRAS power spectrum and the inferred pairwise velocity dispersion on megaparsec scales. Thus, in contrast to previous reports, we find that the CDM scenario does not produce excess power at small scales.
机译:对标准冷暗物质(CDM)宇宙进行大型(N〜17 X 10〜6)高分辨率N体模拟,以研究速度对红移空间中星系功率谱的影响。仿真代码具有前所未有的动态范围,可以在数值数据中解析星系晕,同时保持大规模的良好统计采样。我们提供的证据表明,红移空间功率谱P_s(k)可以通过反映小规模速度色散和大尺度线性流的简单滤波函数与其真实空间对应关系。转换到红移空间后,我们发现在小于20 h〜(-1)Mpc的范围内,功率谱对CDM模型的规范化不敏感。因此,P_s(k)不会在小规模上提供明确的宇宙学约束。尽管如此,值得注意的是,具有两种不同归一化的CDM模型的红移空间功率谱都与IRAS 1.2 Jy调查(Fisher等人)在1至50 h〜(- 1)Mpc。通过排除绑定最紧密的光环的一部分,我们在较低归一化模型中创建了具有80%原始对象的星系目录,该对象与IRAS功率谱和推论的成对速度色散在兆帕秒尺度上都匹配。因此,与以前的报告相比,我们发现CDM方案在小规模规模上不会产生过剩的电力。

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