English

Investigating ionising sources and the complex interstellar medium of GHZ2 at $z=12.3$

Astrophysics of Galaxies 2026-04-10 v2

Abstract

An accurate characterisation of the physical properties of galaxies at cosmic dawn is key to understanding the origin of the high abundance of UV-bright galaxies at z\gtrsim10. We exploit deep NIRSpec PRISM observations of GHZ2 to constrain the sources of ionising radiation and the properties of the ISM in this bright, compact, and highly ionising galaxy at z=12.3. We measure with high significance the prominent N IV, C IV, He II, O III, C III, O II, and Ne III emission features previously detected in shallower observations, and confirm the detection of the N III] λ1750\lambda 1750 multiplet, yielding tight constraints on the N/O ratio, which is found to be \simeq2 times the solar value. We also detect the Mg II λ2800\lambda 2800, [Fe IV] λ2833\lambda 2833 and Si II λ1812\lambda 1812 doublets, the H8+HeI λλ3889\lambda\lambda 3889 blend, and the Si IV+O IV] λλ1400\lambda\lambda 1400 absorption complex. The O III λ3133\lambda 3133 fluorescence line is only detected in the first observing epoch, implying variability on a rest-frame time span of 19 days, strongly suggesting the presence of an active nucleus. Combining the NIRSpec dataset with available optical and far-infrared constraints from MIRI and ALMA, we show that the emission spectrum of GHZ2 cannot be reproduced by single-density spectro-photometric models. Multi-zone photoionisation modelling performed with the HOMERUN code demonstrates that star formation must be occurring in a strongly stratified ISM, where both low-/intermediate-density gas and high-density regions (log(nen_e/cm3)4^{-3}) \gtrsim 4) coexist. The GHZ2 emission landscape is consistent with either a composite star-formation plus AGN scenario, or with star formation occurring in a combination of radiation- and matter-bounded regions. Purely radiation-bounded stellar models fail to reproduce the observed He II emission, making an additional hard ionising component unavoidable.

Keywords

Cite

@article{arxiv.2512.08490,
  title  = {Investigating ionising sources and the complex interstellar medium of GHZ2 at $z=12.3$},
  author = {M. Castellano and L. Napolitano and B. Moreschini and A. Calabrò and L. Christensen and M. Llerena and T. J. L. C. Bakx and F. Belfiore and D. Bevacqua and M. Dickinson and A. Fontana and G. Gandolfi and T. Gasparetto and A. Marconi and S. Mascia and E. Merlin and T. Morishita and T. Nanayakkara and D. Paris and L. Pentericci and B. Pérez-Díaz and G. Roberts-Borsani and S. Rojas Ruiz and P. Santini and T. Treu and E. Vanzella and B. Vulcani and X. Wang and I. Yoon and J. Zavala},
  journal= {arXiv preprint arXiv:2512.08490},
  year   = {2026}
}

Comments

17 pages, 12 figures, 2 tables. Published in the Open Journal of Astrophysics. Public data release available on the ASTRODEEP website http://www.astrodeep.eu/go3073/