paper

The dust enrichment of early galaxies in the JWST and ALMA era

arXiv:2305.01681

Abstract

Recent observations with the James Webb Space Telescope are yielding tantalizing hints of an early population of massive, bright galaxies at , with Atacama Large Millimeter Array (ALMA) observations indicating significant dust masses as early as . To understand the implications of these observations, we use the DELPHI semi-analytic model that jointly tracks the assembly of dark matter halos and their baryons, including the key processes of dust enrichment. Our model employs only two redshift- and mass-independent free parameters (the maximum star-formation efficiency and the fraction of supernova energy that couples to gas) that are tuned against all available galaxy data at before it is used to make predictions up to . Our key results are: (i) the model under-predicts the observed ultraviolet luminosity function (UV LF) at ; observations at lie close to, or even above, a "maximal" model where all available gas is turned into stars; (ii) UV selection would miss 34\% of the star formation rate density at , decreasing to 17\% by for bright galaxies with ; (iii) the dust mass () evolves with the stellar mass () and redshift as ; (iv) the dust temperature increases with stellar mass, ranging between K for galaxies at . Finally, we predict the far infrared LF at , testable with ALMA observations, and caution that spectroscopic redshifts and dust masses must be pinned down before invoking unphysical extrema in galaxy formation models.

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