How Bursty is Star Formation at z>5?
arXiv:2602.16706
Abstract
Motivated by observational evidence from JWST and theoretical results from cosmological simulations, we use a simple parametric, phenomenological model to test to what extent bursty star formation with standard Initial Mass Function, no continuous star formation, no mergers, \mr{and no dust} can account for the observed properties in the vs plane of galaxies at redshifts . We find that the simplest model that fits the data has a quiescence period between bursts ~Myrs and the stellar mass in each galaxy grows linearly as a function of time from to (i.e., repeated bursts in each galaxy produce approximately equal mass in stars). The distribution of burst masses across different galaxies follows a power-law with slope . At the observed galaxy population typically had only one or two bursts of stars formation, hence the observed stellar masses at these redshifts (reaching ~M), roughly represent the distribution of masses formed in one burst.
7 pages, 4 figures, one table. Accepted for publication by ApJ