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Physical properties of z>4 submillimeter galaxies in the COSMOS field

dc.contributor.authorSmolcic, V.
dc.contributor.authorKarim, A.
dc.contributor.authorMiettinen, O.
dc.contributor.authorNovak, M.
dc.contributor.authorMagnelli, B.
dc.contributor.authorRiechers, D. A.
dc.contributor.authorSchinnerer, E.
dc.contributor.authorCapak, P.
dc.contributor.authorBondi, M.
dc.contributor.authorCiliegi, P.
dc.contributor.authorAravena, M.
dc.contributor.authorBertoldi, F.
dc.contributor.authorBourke, S.
dc.contributor.authorBanfield, J.
dc.contributor.authorCarilli, C. L.
dc.contributor.authorCivano, F.
dc.contributor.authorIlbert, O.
dc.contributor.authorIntema, H. T.
dc.contributor.authorLe Fevre, O.
dc.contributor.authorFinoguenov, A.
dc.contributor.authorHallinan, G.
dc.contributor.authorKloeckner, H. -R.
dc.contributor.authorLaigle, C.
dc.contributor.authorMasters, D.
dc.contributor.authorMcCracken, H. J.
dc.contributor.authorMooley, K.
dc.contributor.authorMurphy, E.
dc.contributor.authorNavarette, F.
dc.contributor.authorSalvato, M.
dc.contributor.authorSargent, M.
dc.contributor.authorSheth, K.
dc.contributor.authorToft, S.
dc.contributor.authorZamorani, G.
dc.date.accessioned2015-09-04T05:31:29Z
dc.date.available2015-09-04T05:31:29Z
dc.date.issued2015-04
dc.description.abstractWe study the physical properties of a sample of 6 SMGs in the COSMOS field, spectroscopically confirmed to lie at z>4. We use new GMRT 325 MHz and 3 GHz JVLA data to probe the rest-frame 1.4 GHz emission at z=4, and to estimate the sizes of the star-forming (SF) regions of these sources, resp. Combining our size estimates with those available in the literature for AzTEC1 and AzTEC3 we infer a median radio-emitting size for our z>4 SMGs of (0.63"+/-0.12")x(0.35"+/-0.05") or 4.1x2.3 kpc^2 (major times minor axis; assuming z=4.5) or lower if we take the two marginally resolved SMGs as unresolved. This is consistent with the sizes of SF regions in lower-redshift SMGs, and local normal galaxies, yet higher than the sizes of SF regions of local ULIRGs. Our SMG sample consists of a fair mix of compact and more clumpy systems with multiple, perhaps merging, components. With an average formation time of ~280 Myr, derived through modeling of the UV-IR SEDs, the studied SMGs are young systems. The average stellar mass, dust temperature, and IR luminosity we derive are M*~1.4x10^11 M_sun, T_dust~43 K, and L_IR~1.3x10^13L_sun, resp. The average L_IR is up to an order of magnitude higher than for SMGs at lower redshifts. Our SMGs follow the correlation between dust temperature and IR luminosity as derived for Herschel-selected 0.1<z<2 galaxies. We study the IR-radio correlation for our sources and find a deviation from that derived for z<3 ULIRGs (<q_IR>=1.95+/-0.26 for our sample, compared to q~2.6 for IR luminous galaxies at z<2). In summary, we find that the physical properties derived for our z>4 SMGs put them at the high end of the L_IR-T_dust distribution of SMGs, and that our SMGs form a morphologically heterogeneous sample. Thus, further in-depth analyses of large, statistical samples of high-redshift SMGs are needed to fully understand their role in galaxy formation and evolution.en_AU
dc.description.sponsorshipThis research was funded by the European Union’s Seventh Framework program under grant agreement 337595 (ERC Starting Grant, “CoSMass”). A.K. acknowledges support by the Collaborative Research Council 956, subproject A1, funded by the Deutsche Forschungsgemeinschaft (DFG). The Dark Cosmology Centre is funded by the Danish National Research Foundation.en_AU
dc.format14 pagesen_AU
dc.identifier.issn0004-6361en_AU
dc.identifier.urihttp://hdl.handle.net/1885/15210
dc.publisherEDP Sciencesen_AU
dc.rights© ESO 2015. http://www.sherpa.ac.uk/romeo/issn/0004-6361/..."Publisher's version/PDF may be used (see journal). On author's personal website or institutional website or OAI compliant website" from SHERPA/RoMEO site (as at 4/09/15).en_AU
dc.sourceAstronomy and Astrophysicsen_AU
dc.titlePhysical properties of z>4 submillimeter galaxies in the COSMOS fielden_AU
dc.typeJournal articleen_AU
dcterms.dateAccepted2014-12-03
local.bibliographicCitation.startpageA127en_AU
local.contributor.affiliationBanfield, J., Research School of Astronomy and Astrophysics, The Australian National Universityen_AU
local.contributor.authoruidu5123106en_AU
local.identifier.citationvolume576en_AU
local.identifier.doi10.1051/0004-6361/201424996en_AU
local.publisher.urlhttp://publications.edpsciences.org/en_AU
local.type.statusPublished Versionen_AU

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