论文标题

Voronoi音量功能:宇宙学和星系进化的新探测

Voronoi volume function: A new probe of cosmology and galaxy evolution

论文作者

Paranjape, Aseem, Alam, Shadab

论文摘要

我们研究了Voronoi体积函数(VVF) - 任何集合宇宙示踪剂(星系/光环)的Voronoi Tessellation中细胞体积的分布(或局部数密度)的分布。我们表明,有偏见的示踪剂VVF的形状对诸如光环质量,大规模环境,子结构和红移空间效应等物理特性敏感,这使得这是迄今未经探索的原始宇宙学和星系进化的探测。使用方便的摘要统计数据 - VVF的宽度,中位数和低百分位数作为平均示踪剂数密度的函数 - 我们在一系列暗物质模型的N体模拟中探索了示踪剂种群的这些影响。我们的摘要统计数据敏感探测原始特征,例如初始物质功率谱中的小规模振荡(如在黑暗部门涉及碰撞效应的模型中所产生的),同时对初始功率的截断(如温暖的暗物质模型)在很大程度上不敏感。对于香草冷的暗物质(CDM)宇宙学,摘要​​统计数据显示出强烈的进化和红移空间的效果,并且对逼真的示踪剂样品对宇宙学参数值也很敏感。将GAMA调查中星系的VVF与匹配的CDM(子)光环的VVF进行了比较,暂时揭示了GAMA超越光环质量的环境效应(Modulo未建模的卫星特性)。因此,我们的探索性分析为使用VVF作为星系进化物理学以及暗物质和暗能量的性质的新探针铺平了道路。

We study the Voronoi volume function (VVF) -- the distribution of cell volumes (or inverse local number density) in the Voronoi tessellation of any set of cosmological tracers (galaxies/haloes). We show that the shape of the VVF of biased tracers responds sensitively to physical properties such as halo mass, large-scale environment, substructure and redshift-space effects, making this a hitherto unexplored probe of both primordial cosmology and galaxy evolution. Using convenient summary statistics -- the width, median and a low percentile of the VVF as functions of average tracer number density -- we explore these effects for tracer populations in a suite of N-body simulations of a range of dark matter models. Our summary statistics sensitively probe primordial features such as small-scale oscillations in the initial matter power spectrum (as arise in models involving collisional effects in the dark sector), while being largely insensitive to a truncation of initial power (as in warm dark matter models). For vanilla cold dark matter (CDM) cosmologies, the summary statistics display strong evolution and redshift-space effects, and are also sensitive to cosmological parameter values for realistic tracer samples. Comparing the VVF of galaxies in the GAMA survey with that of abundance matched CDM (sub)haloes tentatively reveals environmental effects in GAMA beyond halo mass (modulo unmodelled satellite properties). Our exploratory analysis thus paves the way for using the VVF as a new probe of galaxy evolution physics as well as the nature of dark matter and dark energy.

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