English

DeepDive: A deep dive into the physics of the first massive quiescent galaxies in the Universe

Astrophysics of Galaxies 2025-07-01 v1

Abstract

We present the DeepDive program, in which we obtained deep (131-3 hours) JWST/NIRSpec G235M/F170LP spectra for 10 primary massive (log(M/M)=10.811.5\log{(M_\star/M_\odot)}=10.8-11.5) quiescent galaxies at z34z\sim3-4. A novel reduction procedure extends the nominal wavelength coverage of G235M beyond Hα\alpha and [NII] at z4z\sim4, revealing weak, narrow Hα\alpha lines indicative of low star formation rates (SFR05Myr1{\rm SFR}\sim0-5\, M_\odot\, {\rm yr^{-1}}). Two out of 10 primary targets have broad Hα\alpha lines, indicating the presence of AGNs. We also conduct an archival search of quiescent galaxies observed with NIRSpec gratings in the DAWN JWST Archive, which provides a statistical context for interpreting the DeepDive targets. This archival search provides a spectroscopic sample of 140 quiescent galaxies spanning 1<z<51<z<5 and covering more than an order of magnitude in stellar mass. We revisit the selection of quiescent galaxies based on rest-frame UVJUVJ colors, specific star formation rates, and the detection of the 4000\r{A} spectral break, finding 90%\sim90\% overlap between these criteria. The sample of a total of 150 quiescent galaxies constructed in this study shows that those at z35z\sim3-5, including the DeepDive targets, typically exhibit weaker 4000\r{A} breaks and bluer colors than their lower-redshift counterparts, indicating generally younger stellar populations. Stacked spectra of sources grouped by the Dn4000D_n4000 index reveal faint Iron and Magnesium absorption line features in the stellar continuum even for the low Dn4000D_n4000 (Dn4000<1.35D_n4000<1.35) subsample at high redshift (z3z\sim3). In addition, higher Dn4000D_n4000 subsamples show fainter nebular emission lines. These results demonstrate that medium-resolution NIRSpec spectroscopy is essential for robustly characterizing the diversity and evolution of early quiescent galaxies. All data from this study will be made publicly available.

Keywords

Cite

@article{arxiv.2506.22642,
  title  = {DeepDive: A deep dive into the physics of the first massive quiescent galaxies in the Universe},
  author = {K. Ito and F. Valentino and G. Brammer and M. L. Hamadouche and K. E. Whitaker and V. Kokorev and P. Zhu and T. Kakimoto and P. -F. Wu and J. Antwi-Danso and W. M. Baker and D. Ceverino and A. L. Faisst and M. Farcy and S. Fujimoto and A. Gallazzi and S. Gillman and R. Gottumukkala and K. E. Heintz and M. Hirschmann and C. K. Jespersen and M. Kubo and M. Lee and G. Magdis and M. Onodera and R. Shimakawa and M. Tanaka and S. Toft and J. R Weaver},
  journal= {arXiv preprint arXiv:2506.22642},
  year   = {2025}
}

Comments

14 pages, 9 figures, and 1 table+Appendix. submitted to A&A. All photometric and spectroscopic data in this paper will be made publicly available after the acceptance of the paper