First Infrared-based implications for the dust attenuation and star formation of typical Ly$\alpha$ emitters
Abstract
By stacking publicly available deep Spitzer/MIPS 24 m and Herschel/PACS images for 213 Ly Emitters (LAEs) in GOODS-South, we obtain a strong upper limit to the IR luminosity of typical LAEs and discuss their attenuation curve for the first time. The upper limit , determined from the MIPS data providing the lowest limit, gives . Here we assume that the local calibration between the 8 m emission and the dust SED shape and metallicity applies at high redshifts and that our LAEs have low metallicities as suggested by previous studies. The inferred escape fractions of Ly, --, and UV continuum, , are higher than the cosmic averages at the same epoch. The SMC attenuation curve is consistent with the IRX and the UV slope of our stacked LAE, while the Meurer's relation (Calzetti curve) predicts a 3.8 times higher IRX; we also discuss the validity of PACS-based allowing the Meurer's relation. SED fitting using the Calzetti curve also gives a times higher SFR than from the and . With , our LAEs lie on a lower-mass extrapolation of the star formation main sequence at , suggesting that the majority of LAEs are mildly star forming with relatively old ages of Myr. The faint implies that LAEs contribute little to the faint (Jy) submm number counts by ALMA.
Keywords
Cite
@article{arxiv.1411.1615,
title = {First Infrared-based implications for the dust attenuation and star formation of typical Ly$\alpha$ emitters},
author = {Haruka Kusakabe and Kazuhiro Shimasaku and Kimihiko Nakajima and Masami Ouchi},
journal= {arXiv preprint arXiv:1411.1615},
year = {2015}
}
Comments
7 pages, 3 figures, accepted to ApJL (added some discussions and then removed the conclusion section)