论文标题

比例不变模型中的光晕质量功能

Halo mass function in scale invariant models

论文作者

Gavas, Swati, Bagla, J S, Khandai, Nishikanta, Kulkarni, Girish

论文摘要

Sheth-Tormen质量功能已被广泛用于量化暗物质光晕的丰度。它比压力​​机质量质量功能是一个显着改善,因为它使用椭圆形塌陷代替球形塌陷。这两个质量函数都可以以通用的形式编写,即在适当的变量中缩放时独立于宇宙学和功率谱。但是,宇宙学模拟表明这种普遍性是近似的。在本文中,我们通过在爱因斯坦·德·保姆宇宙学中的七个幂律模型的一组仅黑物体的N体模拟来研究光晕质量函数的功率谱依赖性。这种宇宙学和幂律功率谱的选择确保了暗物质分布的自相似演化,从而使我们能够隔离质量质量功能的功率谱依赖性。我们发现质量功能显示出明显的非大学性。我们为sheth-tormen质量函数的参数提供了拟合,用于一系列幂律功率光谱指数。我们发现与时期的质量功能的整体形状有轻度的演化。最后,我们将结果扩展到LCDM宇宙学。我们表明,与标准的Sheth-Sheth-Sheth-tormen质量函数相比,从匹配的幂律EDS宇宙学得出的参数值的Sheth-Tormen质量函数为LCDM质量函数提供了更好的拟合。我们的结果表明,需要改进的分析理论以提供更好的质量功能。

Sheth-Tormen mass function has been widely used to quantify the abundance of dark matter halos. It is a significant improvement over the Press-Schechter mass function as it uses ellipsoidal collapse in place of spherical collapse. Both of these mass functions can be written in a form that is universal, i.e., independent of cosmology and power spectrum when scaled in suitable variables. However, cosmological simulations have shown that this universality is approximate. In this paper, we investigate the power spectrum dependence of halo mass function through a suite of dark-matter-only N-body simulations of seven power-law models in an Einstein-de Sitter cosmology. This choice of cosmology and a power-law power spectrum ensures the self-similar evolution of dark matter distribution, allowing us to isolate the power spectrum dependence of mass function. We find that the mass function shows a clear non-universality. We present fits for the parameters of the Sheth-Tormen mass function for a range of power-law power-spectrum indices. We find a mild evolution in the overall shape of the mass function with the epoch. Finally, we extend our result to LCDM cosmology. We show that the Sheth-Tormen mass function with parameter values derived from a matched power-law EdS cosmology provides a better fit to the LCDM mass function than the standard Sheth-Tormen mass function. Our results indicate that an improved analytical theory is required to provide better fits to the mass function.

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