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  4. The Interstellar Medium In High-Redshift Submillimeter Galaxies As Probed By Infrared Spectroscopy
 
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The Interstellar Medium In High-Redshift Submillimeter Galaxies As Probed By Infrared Spectroscopy

Journal
The Astrophysical Journal
Date Issued
2017-02-27
Author(s)
Julie L. Wardlow
Asantha Cooray
Willow Osage
Nathan Bourne
David Clements
Helmut Dannerbauer
Loretta Dunne
Simon Dye
Steve Eales
Duncan Farrah
Cristina Furlanetto
Ibar, Eduardo  
Facultad de Ciencias  
Rob Ivison
Steve Maddox
Michał M. Michałowski
Dominik Riechers
Dimitra Rigopoulou
Douglas Scott
Matthew W. L. Smith
Lingyu Wang
Paul van der Werf
Elisabetta Valiante
Ivan Valtchanov
Aprajita Verma
DOI
10.3847/1538-4357/837/1/12
WoS ID
WOS:000398560000001
Abstract
Abstract Submillimeter galaxies (SMGs) at are luminous in the far-infrared, and have star formation rates, SFR, of hundreds to thousands of solar masses per year. However, it is unclear whether they are true analogs of local ULIRGs or whether the mode of their star formation is more similar to that in local disk galaxies. We target these questions by using Herschel -PACS to examine the conditions in the interstellar medium (ISM) in far-infrared luminous SMGs at –4. We present 70–160 μ m photometry and spectroscopy of the [O iv ]26 μ m, [Fe ii ]26 μ m, [S iii ]33 μ m, [Si ii ]34 μ m, [O iii ]52 μ m, [N iii ]57 μ m, and [O i ]63 μ m fine-structure lines and the S(0) and S(1) hydrogen rotational lines in 13 lensed SMGs identified by their brightness in early Herschel data. Most of the 13 targets are not individually spectroscopically detected; we instead focus on stacking these spectra with observations of an additional 32 SMGs from the Herschel archive—representing a complete compilation of PACS spectroscopy of SMGs. We detect [O i ]63 μ m, [Si ii ]34 μ m, and [N iii ]57 μ m at in the stacked spectra, determining that the average strengths of these lines relative to the far-IR continuum are , , and , respectively. Using the [O iii ]52 μ m/[N iii ]57 μ m emission line ratio, we show that SMGs have average gas-phase metallicities . By using PDR modeling and combining the new spectral measurements with integrated far-infrared fluxes and existing [C ii ]158 μ m data, we show that SMGs have average gas densities, n , of and FUV field strengths, (in Habing units: ), consistent with both local ULIRGs and lower luminosity star-forming galaxies.
Subjects

Astronomy And Astroph...

OCDE Subjects

Natural Sciences::Phy...

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