论文标题

CSST光度星系聚类和宇宙剪切调查的中微子宇宙学的预测

Forecast of Neutrino Cosmology from the CSST Photometric Galaxy Clustering and Cosmic Shear Surveys

论文作者

Lin, Hengjie, Gong, Yan, Chen, Xuelei, Chan, Kwan Chuen, Fan, Zuhui, Zhan, Hu

论文摘要

中国空间站望远镜(CSST)是即将到来的强大的IV阶段,基于IV的空间光学调查设备。预计将以极高的精度探索许多重要的宇宙学问题。在这项工作中,我们专注于调查中微子质量和其他宇宙学参数的限制,并使用CSST光度星系簇和宇宙剪切量调查(即3 $ \ times $ \ times $ 2ptppt),并使用CSST光度星系簇和宇宙剪切调查的模拟数据进行恒定的暗能量方程($ W $ CDM)。分析中还包括来自星系偏差,光度红移不确定性,内在比对,剪切校准,重型反馈,非线性和仪器效应的系统学。考虑到CSST的仪器和观察效应,我们基于COSMOS目录生成模拟数据,并利用Markov Chain Monte Carlo(MCMC)方法执行约束。与当前类似测量结果的结果相比,我们发现CSST 3 $ \ times $ 2pt的调查至少可以提高宇宙学参数的约束至少一个数量级。我们可以在68 \%(95 \%)的置信度下获得中微子质量$σm_ν\ lissim的中微子质量$σm_ν\ lisesim和$σm_ν\ lyssim 0.23 $(0.29)ev的上微子$σm_ν\ lisesim 0.36 $(0.56)ev,如果baryonic效应,$ nimssim 0.23 $(0.29)ev均可在68 \%(95 \ \%)的置信度下。当前的光度测量。这表明CSST光度测量可以对中微子质量和其他宇宙学参数提供严格的约束,并且还可以通过包括来自其他类型的CSST宇宙学调查的数据来进一步改善结果。

China Space Station Telescope (CSST) is a forthcoming powerful Stage IV space-based optical survey equipment. It is expected to explore a number of important cosmological problems in extremely high precision. In this work, we focus on investigating the constraints on neutrino mass and other cosmological parameters under the model of cold dark matter with a constant equation of state of dark energy ($w$CDM), using the mock data from the CSST photometric galaxy clustering and cosmic shear surveys (i.e. 3$\times$2pt). The systematics from galaxy bias, photometric redshift uncertainties, intrinsic alignment, shear calibration, baryonic feedback, non-linear, and instrumental effects are also included in the analysis. We generate the mock data based on the COSMOS catalog considering the instrumental and observational effects of the CSST, and make use of the Markov Chain Monte Carlo (MCMC) method to perform the constraints. Comparing to the results from current similar measurements, we find that CSST 3$\times$2pt surveys can improve the constraints on the cosmological parameters by one order of magnitude at least. We can obtain an upper limit for the sum of neutrino mass $Σm_ν \lesssim 0.36$ (0.56) eV at 68\% (95\%) confidence level, and $Σm_ν \lesssim 0.23$ (0.29) eV at 68\% (95\%) confidence level if ignore the baryonic effect, which is comparable to the {\it Planck} results and much better than the current photometric surveys. This indicates that the CSST photometric surveys can provide stringent constraints on the neutrino mass and other cosmological parameters, and the results also can be further improved by including data from other kinds of CSST cosmological surveys.

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