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UV to IR SEDs of UV-Selected Galaxies in the ELAIS Fields: Evolution of Dust Attenuation and Star Formation Activity from z = 0.7 to 0.2

Authors :
Iglesias-Páramo, J.
Buat, V.
Hernández-Fernández, J.
Xu, C. K.
Burgarella, D.
Takeuchi, T. T.
Boselli, A.
Shupe, D.
Rowan-Robinson, M.
Babbedge, T.
Conrow, T.
Fang, F.
Farrah, D.
González-Solares, E.
Lonsdale, C.
Smith, G.
Surace, J.
Barlow, T. A.
Forster, K.
Friedman, P. G.
Martin, D. C.
Morrissey, P.
Neff, S. G.
Schiminovich, D.
Seibert, M.
Small, T.
Wyder, T. K.
Bianchi, L.
Donas, J.
Heckman, T. M.
Lee, Y.-W.
Madore, B. F.
Milliard, B.
Rich, R. M.
Szalay, A. S.
Welsh, B. Y.
Yi, S. K.
Publication Year :
2007
Publisher :
American Astronomical Society, 2007.

Abstract

We study the ultraviolet to far-infrared (hereafter UV-to-IR) SEDs of a sample of intermediate-redshift (0.2 ≤ z ≤ 0.7) UV-selected galaxies from the ELAIS N1 and ELAIS N2 fields by fitting a multi-wavelength data set to a library of GRASIL templates. Star formation related properties of the galaxies are derived from the library of models by using Bayesian statistics. We find a decreasing presence of galaxies with low attenuation and low total luminosity as redshift decreases, which does not hold for high total luminosity galaxies. In addition, the dust attenuation of low-mass galaxies increases as redshift decreases, and this trend seems to disappear for galaxies with M_* ≥ 10^(11) M_⊙. This result is consistent with a mass-dependent evolution of the dust-to-gas ratio, which could be driven by a mass-dependent efficiency of star formation in star-forming galaxies. The specific star formation rates (SSFR) decrease with increasing stellar mass at all redshifts, and for a given stellar mass the SSFR decreases with decreasing redshift. The differences in the slope of the M^*-SSFR relation found between this work and others at similar redshift could be explained by the adopted selection criteria of the samples, which for a UV-selected sample, favors blue, star-forming galaxies.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.od........38..3698d42897aa83dd8277f4fb055883d2