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

Author:

Desprez Guillaume1ORCID,Martis Nicholas S12ORCID,Asada Yoshihisa13ORCID,Sawicki Marcin1ORCID,Willott Chris J2ORCID,Muzzin Adam4,Abraham Roberto G56ORCID,Bradač Maruša78ORCID,Brammer Gabe910ORCID,Estrada-Carpenter Vicente1ORCID,Iyer Kartheik G11ORCID,Matharu Jasleen910ORCID,Mowla Lamiya12ORCID,Noirot Gaël1,Sarrouh Ghassan T E4ORCID,Strait Victoria910ORCID,Gledhill Rachel910,Rihtaršič Gregor7ORCID

Affiliation:

1. Department of Astronomy & Physics and Institute for Computational Astrophysics, Saint Mary’s University , 923 Robie Street, Halifax, NS B3H 3C3 , Canada

2. NRC Herzberg , 5071 West Saanich Rd, Victoria, BC V9E 2E7 , Canada

3. Department of Astronomy, Kyoto University , Sakyo-ku, Kyoto 606-8502 , Japan

4. Department of Physics and Astronomy, York University , 4700 Keele St. Toronto, ON M3J 1P3 , Canada

5. David A. Dunlap Department of Astronomy and Astrophysics, University of Toronto , 50 St. George Street, Toronto, ON M5S 3H4 , Canada

6. Dunlap Institute for Astronomy and Astrophysics , 50 St. George Street, Toronto, ON M5S 3H4 , Canada

7. Department of Mathematics and Physics , University of Ljubljana, Jadranska ulica 19, SI-1000 Ljubljana , Slovenia

8. Department of Physics and Astronomy, University of California Davis , 1 Shields Avenue, Davis, CA 95616 , USA

9. Cosmic Dawn Center (DAWN) , Jagtvej 128, DK2200 Copenhagen N , Denmark

10. Niels Bohr Institute, University of Copenhagen , Jagtvej 128, DK-2200 Copenhagen N , Denmark

11. Columbia Astrophysics Laboratory, Columbia University , 550 West 120th Street, New York, NY 10027 , USA

12. Whitin Observatory, Department of Physics and Astronomy, Wellesley College , 106 Central Street, Wellesley, MA 02481 , USA

Abstract

ABSTRACT 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 cold dark matter (ΛCDM) 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 Near Infrared Imager and Slitless Spectrograph (NIRISS) Unbiased Cluster Survey (CANUCS), and found a sample of 19 sources over five independent CANUCS fields that cover a total effective area of ∼60 arcmin2 at z ∼ 8. However, (1) our spectral energy distribution 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-equivalent width emission lines in star-forming galaxies rather than Balmer breaks in massive, evolved systems. Additionally, (3) field-to-field variance leads to differences of ∼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 ΛCDM paradigm.

Funder

Canadian Space Agency

Natural Sciences and Engineering Research Council of Canada

JSPS

ERC

ARRS

STScI

NASA

Publisher

Oxford University Press (OUP)

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