论文标题

带有光环质量信息的有偏见的示踪剂重建

Biased tracer reconstruction with halo mass information

论文作者

Liu, Yu, Yu, Yu, Li, Baojiu

论文摘要

有关我们宇宙的大量关键信息已在宇宙大规模结构(LSS)中编码。但是,这些信息的提取通常会受到LSS的非线性的阻碍,LSS的非线性可以在很大程度上被称为重建的各种技术来缓解。在现实的应用中,这些方法的效率始终被许多限制因素降低,这是非常重要的因素,这是由有偏见的物质示踪剂的有限数密度(即发光星系或暗物质光环)引起的射击噪声。在这项工作中,我们探讨了Halo质量信息获得的有偏见的示踪剂重建的收益,这可以抑制射击噪声组件并大大改善示踪剂场与暗物质之间的互相关。为此,我们首先仔细研究了在不同的加权方案(即均匀,质量和最佳权重)下具有各种数量密度的光环磁场的聚类偏差和随机性。然后,我们将偏置的示踪剂重建方法应用于这些不同的加权光环场,并研究线性偏差和观察质量散射如何影响重建性能。我们的结果表明,光环质量是显着改善偏置示踪剂重建的性能的关键信息,这表明在雄心勃勃的正在进行的和未来的星系中,实质上促进了宇宙学测量的精确性(尤其是用于巴里昂声学振荡(BAO))的巨大应用。

Plenty of crucial information about our Universe is encoded in the cosmic large-scale structure (LSS). However, the extractions of these information are usually hindered by the nonlinearities of the LSS, which can be largely alleviated by various techniques known as the reconstruction. In realistic applications, the efficiencies of these methods are always degraded by many limiting factors, a quite important one being the shot noise induced by the finite number density of biased matter tracers (i.e., luminous galaxies or dark matter halos) in observations. In this work, we explore the gains of biased tracer reconstruction achieved from halo mass information, which can suppress shot noise component and dramatically improves the cross-correlation between tracer field and dark matter. To this end, we first closely study the clustering biases and the stochasticity properties of halo fields with various number densities under different weighting schemes, i.e., the uniform, mass and optimal weightings. Then, we apply the biased tracer reconstruction method to these different weighted halo fields and investigate how linear bias and observational mass scatter affect the reconstruction performance. Our results demonstrate that halo masses are critical information for significantly improving the performance of biased tracer reconstruction, indicating a great application potential for substantially promoting the precision of cosmological measurements [especially for baryon acoustic oscillations (BAO)] in the ambitious on-going and future galaxy surveys.

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