Exploring the Masses of the Two Most Distant Gravitational Lensing Clusters at the Cosmic Noon

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Kim, Jinhyub, Jee, M. James, Andreon, Stefano, Mroczkowski, Tony, Miller, Lance, van Marrewijk, Joshiwa, Khim, Hye Gyeong
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912497862180864
author Kim, Jinhyub
Jee, M. James
Andreon, Stefano
Mroczkowski, Tony
Miller, Lance
van Marrewijk, Joshiwa
Khim, Hye Gyeong
author_facet Kim, Jinhyub
Jee, M. James
Andreon, Stefano
Mroczkowski, Tony
Miller, Lance
van Marrewijk, Joshiwa
Khim, Hye Gyeong
contents Observations over the past decade have shown that galaxy clusters undergo the most transformative changes during the $z = 1.5 - 2$ epoch. However, challenges such as low lensing efficiency, high shape measurement uncertainty, and a scarcity of background galaxies have prevented us from characterizing their masses with weak gravitational lensing (WL) beyond the redshift $z\sim1.75$. In this paper, we report the successful WL detection of JKCS 041 and XLSSC 122 at $z=1.80$ and $z=1.98$, respectively, utilizing deep infrared imaging data from the Hubble Space Telescope with careful removal of instrumental effects. These are the most distant clusters ever measured through WL. The mass peaks of JKCS 041 and XLSSC 122, which coincide with the X-ray peak positions of the respective clusters, are detected at the $\sim3.7σ$ and $\sim3.2σ$ levels, respectively. Assuming a single spherical Navarro-Frenk-White profile, we estimate that JKCS 041 has a virial mass of $M_{200c} = (5.4\pm1.6) \times 10^{14} M_{\odot}$ while the mass of XLSSC 122 is determined to be $M_{200c} = (3.3\pm1.8) \times 10^{14} M_{\odot}$. These WL masses are consistent with the estimates inferred from their X-ray observations. We conclude that although the probability of finding such massive clusters at their redshifts is certainly low, their masses can still be accommodated within the current $Λ$CDM paradigm.
format Preprint
id arxiv_https___arxiv_org_abs_2507_16925
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Exploring the Masses of the Two Most Distant Gravitational Lensing Clusters at the Cosmic Noon
Kim, Jinhyub
Jee, M. James
Andreon, Stefano
Mroczkowski, Tony
Miller, Lance
van Marrewijk, Joshiwa
Khim, Hye Gyeong
Cosmology and Nongalactic Astrophysics
Observations over the past decade have shown that galaxy clusters undergo the most transformative changes during the $z = 1.5 - 2$ epoch. However, challenges such as low lensing efficiency, high shape measurement uncertainty, and a scarcity of background galaxies have prevented us from characterizing their masses with weak gravitational lensing (WL) beyond the redshift $z\sim1.75$. In this paper, we report the successful WL detection of JKCS 041 and XLSSC 122 at $z=1.80$ and $z=1.98$, respectively, utilizing deep infrared imaging data from the Hubble Space Telescope with careful removal of instrumental effects. These are the most distant clusters ever measured through WL. The mass peaks of JKCS 041 and XLSSC 122, which coincide with the X-ray peak positions of the respective clusters, are detected at the $\sim3.7σ$ and $\sim3.2σ$ levels, respectively. Assuming a single spherical Navarro-Frenk-White profile, we estimate that JKCS 041 has a virial mass of $M_{200c} = (5.4\pm1.6) \times 10^{14} M_{\odot}$ while the mass of XLSSC 122 is determined to be $M_{200c} = (3.3\pm1.8) \times 10^{14} M_{\odot}$. These WL masses are consistent with the estimates inferred from their X-ray observations. We conclude that although the probability of finding such massive clusters at their redshifts is certainly low, their masses can still be accommodated within the current $Λ$CDM paradigm.
title Exploring the Masses of the Two Most Distant Gravitational Lensing Clusters at the Cosmic Noon
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2507.16925