Forecasting Constraint on Primordial Black Hole Properties with the CSST $3\times2$pt Analysis

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Main Authors: Hu, Dingao, Gong, Yan, Su, Pengfei, Lin, Hengjie, Miao, Haitao, Xiong, Qi, Chen, Xuelei
Format: Preprint
Published: 2025
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author Hu, Dingao
Gong, Yan
Su, Pengfei
Lin, Hengjie
Miao, Haitao
Xiong, Qi
Chen, Xuelei
author_facet Hu, Dingao
Gong, Yan
Su, Pengfei
Lin, Hengjie
Miao, Haitao
Xiong, Qi
Chen, Xuelei
contents This study forecasts the constraints on the properties of primordial black holes (PBHs) as a cold dark matter component using the galaxy clustering, weak lensing, and galaxy-galaxy lensing (i.e. $3\times2$pt) measurements from the upcoming Chinese Space Station Survey Telescope (CSST) photometric survey. Since PBHs formed via gravitational collapse in the early Universe, they can additionally affect the formation and evolution of the cosmic large-scale structure (LSS) through ``Poisson" effect. We compute the angular power spectra for PBH-$Λ$CDM cosmology, and generate mock data based on the CSST instrumental and survey design. The Markov Chain Monte Carlo (MCMC) method is employed to constrain the free parameters, such as the product of the PBH fraction and mass $f_{\rm PBH}m_{\rm PBH}$ and other cosmological parameters. The systematic parameters are also included in the fitting process, such as the parameters of the baryonic effect, intrinsic alignment, galaxy bias, photometric redshift (photo-$z$) calibration, shear calibration, and noise terms. We find that the CSST 3$\times$2pt analysis can achieve tight constraints on $f_{\rm PBH}m_{\rm PBH}$, with 68% and 95% confidence levels (CLs) reaching $<10^{3.9} M_{\odot}$ and $<10^{4.7} M_{\odot}$, respectively. Additionally, the cosmological parameters, e.g. $Ω_m$, $σ_8$ and $w$, can be constrained with the precisions of 3.3%, 1.7%, 13%, respectively. This indicates that the CSST 3$\times$2pt analysis is a powerful tool to advance the PBH dark matter studies in the near future.
format Preprint
id arxiv_https___arxiv_org_abs_2511_22575
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Forecasting Constraint on Primordial Black Hole Properties with the CSST $3\times2$pt Analysis
Hu, Dingao
Gong, Yan
Su, Pengfei
Lin, Hengjie
Miao, Haitao
Xiong, Qi
Chen, Xuelei
Cosmology and Nongalactic Astrophysics
This study forecasts the constraints on the properties of primordial black holes (PBHs) as a cold dark matter component using the galaxy clustering, weak lensing, and galaxy-galaxy lensing (i.e. $3\times2$pt) measurements from the upcoming Chinese Space Station Survey Telescope (CSST) photometric survey. Since PBHs formed via gravitational collapse in the early Universe, they can additionally affect the formation and evolution of the cosmic large-scale structure (LSS) through ``Poisson" effect. We compute the angular power spectra for PBH-$Λ$CDM cosmology, and generate mock data based on the CSST instrumental and survey design. The Markov Chain Monte Carlo (MCMC) method is employed to constrain the free parameters, such as the product of the PBH fraction and mass $f_{\rm PBH}m_{\rm PBH}$ and other cosmological parameters. The systematic parameters are also included in the fitting process, such as the parameters of the baryonic effect, intrinsic alignment, galaxy bias, photometric redshift (photo-$z$) calibration, shear calibration, and noise terms. We find that the CSST 3$\times$2pt analysis can achieve tight constraints on $f_{\rm PBH}m_{\rm PBH}$, with 68% and 95% confidence levels (CLs) reaching $<10^{3.9} M_{\odot}$ and $<10^{4.7} M_{\odot}$, respectively. Additionally, the cosmological parameters, e.g. $Ω_m$, $σ_8$ and $w$, can be constrained with the precisions of 3.3%, 1.7%, 13%, respectively. This indicates that the CSST 3$\times$2pt analysis is a powerful tool to advance the PBH dark matter studies in the near future.
title Forecasting Constraint on Primordial Black Hole Properties with the CSST $3\times2$pt Analysis
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2511.22575