A Massive Galaxy at the Edge of Feedback-Free Efficiency
K. Aditya, Kartick C. Sarkar
astro-ph.GA
Submitted: 2026-07-31
Comments: comments are welcome !
License: http://creativecommons.org/licenses/by/4.0/
The gist: The efficiency with which galaxies convert their available baryonic reservoir into stars sets a fundamental ceiling on stellar mass assembly in the early Universe and encodes the cumulative effect of
Terminology
Abstract
The efficiency with which galaxies convert their available baryonic reservoir into stars sets a fundamental ceiling on stellar mass assembly in the early Universe and encodes the cumulative effect of stellar feedback. in this paper, we report the measurement of star-formation efficiency (SFE) of a photometrically and spectroscopically vetted reference sample at z=9-10, out of which 31 are spectroscopically confirmed. Among them, we highlight a spectroscopically confirmed galaxy, UNCOVER 3686 at z = 9.31, which has a stellar mass M = 10 9.55 M and physical properties comparable to the predictions of the feedback-free starburst (FFB) scenario. We use this galaxy as an anchor for the first direct observational test of whether galaxy at cosmic dawn with physical properties predicted in the FFB theory reach the maximum baryon conversion efficiencies predicted by the feedback-free starburst scenario. We find the SFE for this galaxy to lie between about 20% and 60%, a factor of 2 to 6 above empirical model predictions. The compact morphology (R e = 0.45 kpc), young stellar age (about 160 Myr), low metallicity (Z/Z about 0.2), and inferred gas density (n gas about 3 times 10 cubed cm-3) of this galaxy are consistent with feedback-free (FFB) galaxy formation conditions. We conclude that UNCOVER 3686 is an excellent candidate for an FFB galaxy in which the global star formation efficiency approaches the theoretical limits due to weak stellar feedback.
Sources
- A first systematic study of [OIII] 88$\mu$m at $z>8$: two luminous oxygen lines and a powerful ionized outflow in the first 600 million years
- Spatially resolved metallicity and ionization in the merging system Gz9p3 at z=9.3
- SPURS: Bursty Star Formation in an Extremely Luminous Weak Emission Line Galaxy at $z=9.3$
- Breaking Through the Cosmic Fog: JWST/NIRSpec Constraints on Ionizing Photon Escape in Reionization-Era Galaxies
- Galaxy formation in the first billion years
- The JWST Spectroscopic Properties of Galaxies at $z=9-14$
Related papers
- Apparent Stability in Self-Gravitating Turbulence and the Evolution of Molecular Clouds
- Two sets of potential-density basis pairs for the study of radial perturbations in collisionless spherical stellar systems
- Constraining reionization-era Ly alpha escape with JELS-MUSE: a highly complete H alpha-selected sample at z about6.1
- Deriving volume density profiles of filaments from observed surface densities
- Little Red Dots and Supermassive Black Hole Seed Formation in Ultralight Dark Matter Halos
- MEGATRON: how the first stars can create an iron metallicity plateau in the smallest dwarf galaxies