论文标题
估计具有快速傅立叶变换的离散宇宙动量场的功率谱
Estimating power spectrum of discrete cosmic momentum field with fast Fourier transform
论文作者
论文摘要
制定基于快速傅立叶变换的快速估计器,用于测量动量功率谱,包括动量的自动功率谱,动量差异以及密度波动和动量差异的交叉光谱。提出了使用三阶bettle-lemarié缩放函数将离散对象分配给常规网格以进行快速傅立叶变换的算法,以清洁别名效应。数值实验证明,实现可以达到次级精度,直到接近Nyquist频率。从理论上和数值上得出了消除批量流量对动量功率谱的估计的影响,减去批量流量的影响很小,但可能会引起非线性状态的有意义的差异,并且可能不必为精确或足够准确的样品减去散装流量。测量并讨论了来自N体模拟的暗物质样品的动量功率谱。正如预期的那样,对一个环的欧拉扰动理论的预测仅比z = 0时的线性理论略好,但可以以提高的精度应用于更高的红移。模拟数据的测量和一个环的欧拉理论都表明,动量场包含强旋转部分,并且动量差异中存在很大的随机分量,与密度场无关。三种动量功率光谱具有自己的特征。
Fast Fourier transform based estimators are formulated for measuring momentum power spectra, including the auto power spectra of the momentum, the momentum divergence, and the cross spectrum of density fluctuation and momentum divergence. Algorithms using the third order Bettle-Lemarié scaling function to assign discrete objects to regular grids for fast Fourier transform are proposed to clean alias effects. Numerical experiments prove that the implementation can achieve sub-percent precision till close to the Nyquist frequency. Impact of removing bulk flow on estimation of momentum power spectra are derived theoretically and verified numerically, subtracting bulk flow has little effects at large scales but might induce meaningful differences in nonlinear regime, and probably it is not necessary to subtract bulk flow for samples which peculiar velocities are exact or sufficiently accurate. Momentum power spectra of dark matter samples from N-body simulation are measured and discussed. As expected, prediction of the one loop Eulerian perturbation theory agrees with simulation only slightly better than the linear theory at z=0, but can be applied to higher redshift with improved accuracy. Measurements of simulation data and the one loop Eulerian theory both reveal that the momentum field contains strong rotational part, and there is a large stochastic component in the divergence of momentum which is not correlated with the density field. The three kinds of momentum power spectra have their own characteristics.