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The Swift GRB Host Galaxy Legacy Survey - II. Rest-Frame NEAR-IR Luminosity Distribution and Evidence for a Near-Solar Metallicity Threshold

Authors :
R.-R. Chary
Thomas Krühler
Tanmoy Laskar
Steve Schulze
Michał J. Michałowski
Johan P. U. Fynbo
Jens Hjorth
Andrew J. Levan
A. de Ugarte Postigo
Daniel A. Perley
Edo Berger
Nial R. Tanvir
Source :
Astrophysical Journal
Publication Year :
2016
Publisher :
American Astronomical Society, 2016.

Abstract

We present rest-frame NIR luminosities and stellar masses for a large and uniformly-selected population of GRB host galaxies using deep Spitzer Space Telescope imaging of 119 targets from the Swift GRB Host Galaxy Legacy Survey spanning 0.03 < z < 6.3, and determine the effects of galaxy evolution and chemical enrichment on the mass distribution of the GRB host population across cosmic history. We find strong evolution in the host luminosity distribution between z~0.5 (median absolute NIR AB magnitude ~ -18.5, corresponding to M* ~ 3x10^8 M_sun and z~1.5), but negligible variation between z~1.5 and z~5 (median magnitude ~ -21.2, corresponding to M* ~ 5x10^9 M_sun). Dust-obscured GRBs dominate the massive host population but are only rarely seen associated with low-mass hosts, indicating that massive star-forming galaxies are universally and (to some extent) homogeneously dusty at high-redshift while low-mass star-forming galaxies retain little dust in their ISM. Comparing our luminosity distributions to field surveys and measurements of the high-z mass-metallicity relation, our results have good consistency with a model in which the GRB rate per unit star-formation is constant in galaxies with gas-phase metallicity below approximately the Solar value but heavily suppressed in more metal-rich environments. This model also naturally explains the previously-reported "excess" in the GRB rate beyond z>2; metals stifle GRB production in most galaxies at z<br />Published in ApJ

Details

Language :
English
ISSN :
15383881, 0004637X, 15383873, 00670049, 20418205, and 15384357
Database :
OpenAIRE
Journal :
Astrophysical Journal
Accession number :
edsair.doi.dedup.....a93575d7cab5c0b6996e426f6b1e54a4