The SFR-M$_*$ Correlation Extends to Low Mass at High Redshift
Abstract
To achieve a fuller understanding of galaxy evolution, SED fitting can be used to recover quantities beyond stellar masses (M) and star formation rates (SFRs). We use Star Formation Histories (SFHs) reconstructed via the Dense Basis method of Iyer \& Gawiser (2017) for a sample of galaxies at in the CANDELS GOODS-S field to study the nature and evolution of the SFR-M correlation. The reconstructed SFHs represent trajectories in SFR-M space, enabling us to study galaxies at epochs earlier than observed by propagating them backwards in time along these trajectories. We study the SFR-M correlation at using both direct fits to galaxies observed at those epochs and SFR-M trajectories of galaxies observed at lower redshifts. The SFR-M correlations obtained using the two approaches are found to be consistent with each other through a KS test. Validation tests using SFHs from semi-analytic models and cosmological hydrodynamical simulations confirm the sensitivity of the method to changes in the slope, normalization and shape of the SFR-M correlation. This technique allows us to further probe the low-mass regime of the correlation at high-z by dex and over an effective volume of larger than possible with just direct fits. We find that the SFR-M correlation is consistent with being linear down to M at . The evolution of the correlation is well described by , where is the age of the universe in Gyr.
Cite
@article{arxiv.1809.04099,
title = {The SFR-M$_*$ Correlation Extends to Low Mass at High Redshift},
author = {Kartheik G. Iyer and Eric Gawiser and Romeel Davé and Philip Davis and Steven L. Finkelstein and Dritan Kodra and Anton M. Koekemoer and Peter Kurczynski and Jeffery A. Newman and Camilla Pacifici and Rachel Somerville},
journal= {arXiv preprint arXiv:1809.04099},
year = {2018}
}
Comments
22 pages, 10 figures. Accepted for publication in ApJ