Constraining Star Formation Histories of Blue Galaxies using the Scatter between Stellar Mass and Halo Mass
arXiv:1910.01644
Abstract
We present constraints on the timescale of star formation variability and the correlation between star formation and host halo accretion histories of star-forming (SF) central galaxies from the scatter of the stellar-to-halo mass relation (SHMR). SF galaxies are found to have a tight relationship between their star formation rates and stellar masses on the so-called "star-forming sequence" (SFS), which characterizes their SF histories and growths. Meanwhile, observed SHMR constraints connect growth to halo accretion history. Combining these observed trends with a cosmological -body simulation, we present flexible models that track the SF, , and halo accretion histories of SF central galaxies at while reproducing the observed stellar mass function and SFS in SDSS DR7. We find that the scatter in SHMR at , , is sensitive to the timescale of star formation variability, , and the correlation coefficient, , between SF and halo accretion histories: shorter and higher both result in tighter . To reproduce a constant 0.2 dex scatter over , our models require Gyr for or for Gyr. For , as found in the literature, Gyr is necessary. Meanwhile, to reproduce the tightening of to 0.2 dex from in hydrodynamical simulations, our models require Gyr for . Although, the lack of consensus on at and at from observations and galaxy formation models remains the main bottleneck in precisely constraining and , we demonstrate that SHMR can be used to constrain the SF and host halo accretion histories of SF central galaxies.
27 pages, 9 figures
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