Igniting Galaxy Formation in the Postreionization Universe, II: Nature versus Nurture
arXiv:2609.30267
Abstract
Although the ultraviolet background from reionization is thought to conspire against the smallest halos, some gas-rich halos in the post-reionization Universe still form stars. We ask which properties, environmental or intrinsic, determine ignition. Using the FIREbox cosmological volume, we compare recently-ignited halos to a mass- and gas-matched sample of gas-resolved starless halos at --6. We test three families of "third axis" properties beyond , , and : geometric environment (the Perturbation Index and local galaxy density ), hydrodynamic environment (the -- gas-supply shell), and intrinsic halo properties (concentration and the neutral-gas reservoir). A nested random-forest classification finds that geometric environment adds little, while the hydrodynamic shell is modestly informative. Three complementary properties each discriminate ignited from starless halos beyond the mass--gas--redshift baseline (AUC , where is chance): total HI mass (, AUC ), the extent of the neutral gas (, AUC ), and the central HI density (, AUC ); jointly they reach AUC , the highest of any combination we test. At fixed halo mass, gas mass and redshift, recently-ignited halos harbor more HI over a larger radius than their matched controls, and these two enhancements are uncorrelated. The same reservoir sets when ignition can happen: from to the median starless halo keeps its gas ( dex) while its neutral fraction falls by dex, so the reservoir is ionized rather than exhausted and the ignition window closes below . In sum, a halo's own neutral-gas reservoir discriminates ignited from starless halos more sharply than its location in the cosmic web -- nature over nurture.
18 pages, 10 figures, comments are welcome