论文标题

在红移空间中,以后重建的星系双光谱来限制原始非高斯性

Constraining Primordial Non-Gaussianity with Post-reconstructed Galaxy Bispectrum in Redshift Space

论文作者

Shirasaki, Masato, Sugiyama, Naonori S., Takahashi, Ryuichi, Kitaura, Francisco-Shu

论文摘要

星系双光谱是早期宇宙中充气物理的有前途的探测,这是原始非高斯性(PNG)的量度,而由于非线性重力生长,其信噪比受到模式耦合的显着影响。在本文中,我们研究了从非线性星系密度磁场的线性宇宙质量密度电场的标准重建方法,以消除红移空间银河系双线百年代的协方差。特别是,我们通过使用4000个独立的$ n $ body仿真来评估双光谱大规模的黑物质光晕的协方差。我们的结果表明,后重建字段的双光谱协方差以$ k <0.2 \,h \,{\ rm mpc}^{ - 1} $的规模接近高斯预测。我们还验证了使用扰动理论的重建细节的前阶PNG诱导的双向双光谱。然后,我们证明了$ \ sim0.5 $的红移,png的后重建后双光谱的约束功率。此外,我们进行了Fisher分析,以预测Galaxy Bispectra(包括各向异性信号)的PNG约束。假设在SDSS Baryon振荡光谱调查中假设大量星系样品,我们发现,后重建的双光谱可以用PNG的局部,等式和正交类型来约束使用$ΔF_ {\ rm nl} \ sim sim $ 13、90和42和42和42和42和42和42和42的局部,等式和正交类型的PNG型。 Bispectrum $ 1.3-3.2 $。总之,重建在约束各种类型的PNG特征中起着至关重要的作用,其水平为$Δf_ {\ rm nl} <1 $从基于即将进行的星系调查的Galaxy Bispectrum中。

Galaxy bispectrum is a promising probe of inflationary physics in the early universe as a measure of primordial non-Gaussianity (PNG), whereas its signal-to-noise ratio is significantly affected by the mode coupling due to non-linear gravitational growth. In this paper, we examine the standard reconstruction method of linear cosmic mass density fields from non-linear galaxy density fields to de-correlate the covariance in redshift-space galaxy bispectra. In particular, we evaluate the covariance of the bispectrum for massive-galaxy-sized dark matter halos with reconstruction by using 4000 independent $N$-body simulations. Our results show that the bispectrum covariance for the post-reconstructed field approaches the Gaussian prediction at scale of $k<0.2\, h\, {\rm Mpc}^{-1}$. We also verify the leading-order PNG-induced bispectrum is not affected by details of the reconstruction with perturbative theory. We then demonstrate the constraining power of the post-reconstructed bispectrum for PNG at redshift of $\sim0.5$. Further, we perform a Fisher analysis to make a forecast of PNG constraints by galaxy bispectra including anisotropic signals. Assuming a massive galaxy sample in the SDSS Baryon Oscillation Spectroscopic Survey, we find that the post-reconstructed bispectrum can constrain the local-, equilateral- and orthogonal-types of PNG with $Δf_{\rm NL} \sim$13, 90 and 42, respectively, improving the constraints with the pre-reconstructed bispectrum by a factor of $1.3-3.2$. In conclusion, the reconstruction plays an essential role in constraining various types of PNG signatures with a level of $Δf_{\rm NL}<1$ from the galaxy bispectrum based on upcoming galaxy surveys.

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