论文标题

具有大规模结构的精确宇宙学的盲目挑战:红移空间电源谱的有效现场理论的结果

Blinded challenge for precision cosmology with large-scale structure: results from effective field theory for the redshift-space galaxy power spectrum

论文作者

Nishimichi, Takahiro, D'Amico, Guido, Ivanov, Mikhail M., Senatore, Leonardo, Simonović, Marko, Takada, Masahiro, Zaldarriaga, Matias, Zhang, Pierre

论文摘要

银河功率谱的准确理论模板是成功和未来光谱调查成功的关键。我们研究了大规模结构的有效现场理论能够提供这样的模板并正确估计宇宙学参数。为此,我们从模仿老板银河样本的高分辨率模拟目录的红移空间功率谱中推断出宇宙学参数的盲目挑战,但涵盖了累积量的一百倍。这个巨大的仿真量使我们能够将由于样本差异引起的统计误差而导致的系统偏置分离。挑战任务是测量模拟中使用的三个未知输入参数:哈勃常数,物质密度分数和聚类幅度。我们介绍了由两个独立团队进行的分析,他们符合另一个独立组生成的模拟模拟数据。这使我们能够避免分析仪的任何确认偏差,并确定对特定EFT实现的可能调整。两个独立的团队都恢复了与总仿真体积相对应的次级统计错误内输入参数的真实值。

An accurate theoretical template for the galaxy power spectrum is a key for the success of ongoing and future spectroscopic surveys. We examine to what extent the Effective Field Theory of Large Scale Structure is able to provide such a template and correctly estimate cosmological parameters. To that end, we initiate a blinded challenge to infer cosmological parameters from the redshift-space power spectrum of high-resolution mock catalogs mimicking the BOSS galaxy sample but covering a hundred times larger cumulative volume. This gigantic simulation volume allows us to separate systematic bias due to theoretical modeling from the statistical error due to sample variance. The challenge task was to measure three unknown input parameters used in the simulation: the Hubble constant, the matter density fraction, and the clustering amplitude. We present analyses done by two independent teams, who have fitted the mock simulation data generated by yet another independent group. This allows us to avoid any confirmation bias by analyzers and pin down possible tuning of the specific EFT implementations. Both independent teams have recovered the true values of the input parameters within sub-percent statistical errors corresponding to the total simulation volume.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源