$Λ$CDM not dead yet: massive high-z Balmer break galaxies are less common than previously reported

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Desprez, Guillaume, Martis, Nicholas S., Asada, Yoshihisa, Sawicki, Marcin, Willott, Chris J., Muzzin, Adam, Abraham, Roberto G., Bradač, Maruša, Brammer, Gabe, Estrada-Carpenter, Vicente, Iyer, Kartheik G., Matharu, Jasleen, Mowla, Lamiya, Noirot, Gaël, Sarrouh, Ghassan T. E., Strait, Victoria, Gledhill, Rachel, Rihtaršič, Gregor
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916213182955520
author Desprez, Guillaume
Martis, Nicholas S.
Asada, Yoshihisa
Sawicki, Marcin
Willott, Chris J.
Muzzin, Adam
Abraham, Roberto G.
Bradač, Maruša
Brammer, Gabe
Estrada-Carpenter, Vicente
Iyer, Kartheik G.
Matharu, Jasleen
Mowla, Lamiya
Noirot, Gaël
Sarrouh, Ghassan T. E.
Strait, Victoria
Gledhill, Rachel
Rihtaršič, Gregor
author_facet Desprez, Guillaume
Martis, Nicholas S.
Asada, Yoshihisa
Sawicki, Marcin
Willott, Chris J.
Muzzin, Adam
Abraham, Roberto G.
Bradač, Maruša
Brammer, Gabe
Estrada-Carpenter, Vicente
Iyer, Kartheik G.
Matharu, Jasleen
Mowla, Lamiya
Noirot, Gaël
Sarrouh, Ghassan T. E.
Strait, Victoria
Gledhill, Rachel
Rihtaršič, Gregor
contents Early JWST observations that targeted so-called double-break sources (attributed to Lyman and Balmer breaks at $z>7$), reported a previously unknown population of very massive, evolved high-redshift galaxies. This surprising discovery led to a flurry of attempts to explain these objects' unexpected existence including invoking alternatives to the standard $Λ$CDM cosmological paradigm. To test these early results, we adopted the same double-break candidate galaxy selection criteria to search for such objects in the JWST images of the CAnadian NIRISS Unbiased Cluster Survey (CANUCS), and found a sample of 19 sources over five independent CANUCS fields that cover a total effective area of $\sim60\,$arcmin$^2$ at $z\sim8$. However, (1) our SED fits do not yield exceptionally high stellar masses for our candidates, while (2) spectroscopy of five of the candidates shows that while all five are at high redshifts, their red colours are due to high-EW emission lines in star-forming galaxies rather than Balmer breaks in massive, evolved systems. Additionally, (3) field-to-field variance leads to differences of $\sim 1.5$ dex in the maximum stellar masses measured in the different fields, suggesting that the early single-field JWST observations may have suffered from cosmic variance and/or sample bias. Finally, (4) we show that the presence of even a single massive outlier can dominate conclusions from small samples such as those in early JWST observations. In conclusion, we find that the double-break sources in CANUCS are not sufficiently massive or numerous to warrant questioning the standard $Λ$CDM paradigm.
format Preprint
id arxiv_https___arxiv_org_abs_2310_03063
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle $Λ$CDM not dead yet: massive high-z Balmer break galaxies are less common than previously reported
Desprez, Guillaume
Martis, Nicholas S.
Asada, Yoshihisa
Sawicki, Marcin
Willott, Chris J.
Muzzin, Adam
Abraham, Roberto G.
Bradač, Maruša
Brammer, Gabe
Estrada-Carpenter, Vicente
Iyer, Kartheik G.
Matharu, Jasleen
Mowla, Lamiya
Noirot, Gaël
Sarrouh, Ghassan T. E.
Strait, Victoria
Gledhill, Rachel
Rihtaršič, Gregor
Astrophysics of Galaxies
Early JWST observations that targeted so-called double-break sources (attributed to Lyman and Balmer breaks at $z>7$), reported a previously unknown population of very massive, evolved high-redshift galaxies. This surprising discovery led to a flurry of attempts to explain these objects' unexpected existence including invoking alternatives to the standard $Λ$CDM cosmological paradigm. To test these early results, we adopted the same double-break candidate galaxy selection criteria to search for such objects in the JWST images of the CAnadian NIRISS Unbiased Cluster Survey (CANUCS), and found a sample of 19 sources over five independent CANUCS fields that cover a total effective area of $\sim60\,$arcmin$^2$ at $z\sim8$. However, (1) our SED fits do not yield exceptionally high stellar masses for our candidates, while (2) spectroscopy of five of the candidates shows that while all five are at high redshifts, their red colours are due to high-EW emission lines in star-forming galaxies rather than Balmer breaks in massive, evolved systems. Additionally, (3) field-to-field variance leads to differences of $\sim 1.5$ dex in the maximum stellar masses measured in the different fields, suggesting that the early single-field JWST observations may have suffered from cosmic variance and/or sample bias. Finally, (4) we show that the presence of even a single massive outlier can dominate conclusions from small samples such as those in early JWST observations. In conclusion, we find that the double-break sources in CANUCS are not sufficiently massive or numerous to warrant questioning the standard $Λ$CDM paradigm.
title $Λ$CDM not dead yet: massive high-z Balmer break galaxies are less common than previously reported
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2310.03063