Studies have proposed that there is evidence for cosmological coupling of black holes (BHs) with an index of k≈3; hence, BHs serve as the astrophysical source of dark energy. However, the data sample is limited for the redshifts of ≤2.5. In recent years, the James Webb Space Telescope (JWST) has detected many high-redshift active galactic nuclei (AGNs) and quasars. Among the JWST NIRSpec-/NIRCam-resolved AGNs, three are determined to be in early-type host galaxies with a redshift of z∼4.5−−7. However, their M⋆ and MBH are in tension with the predicted cosmological coupling of black holes with k=3 at a confidence level of ∼2σ, which challenges the hypothesis that BHs serve as the origin of dark energy. Future work on high-redshift AGNs using the JWST will further assess such a hypothesis by identifying more early-type host galaxies in the higher mass range.
@article{arxiv.2305.03408,
title = {Black holes as the source of dark energy: a stringent test with high-redshift JWST AGNs},
author = {Lei Lei and Lei Zu and Guan-Wen Yuan and Zhao-Qiang Shen and Yi-Ying Wang and Yuan-Zhu Wang and Zhen-Bo Su and Wen-ke Ren and Shao-Peng Tang and Hao Zhou and Chi Zhang and Zhi-Ping Jin and Lei Feng and Yi-Zhong Fan and Da-Ming Wei},
journal= {arXiv preprint arXiv:2305.03408},
year = {2024}
}
Comments
9 pages, 3 figures, 2 tables; Comments are welcome!