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Dust and gas in the magellanic clouds from the heritage Herschel Key Project. I. Dust properties and insights into the origin of the submillimeter excess emission

dc.contributor.authorGordon, Karl D.
dc.contributor.authorRoman-Duval, Julia
dc.contributor.authorCaroline, B. O. T.
dc.contributor.authorMeixner, Margaret
dc.contributor.authorBabler, Brian L.
dc.contributor.authorBernard, Jean Ph
dc.contributor.authorBolatto, Alberto
dc.contributor.authorBoyer, M. L.
dc.contributor.authorClayton, Geoffrey C.
dc.contributor.authorEngelbracht, Charles W.
dc.contributor.authorJameson, Katherine
dc.date.accessioned2018-11-29T22:52:39Z
dc.date.available2018-11-29T22:52:39Z
dc.date.issued2014
dc.date.updated2018-11-29T07:47:34Z
dc.description.abstractThe dust properties in the Large and Small Magellanic clouds (LMC/SMC) are studied using the HERITAGE Herschel Key Project photometric data in five bands from 100 to 500 μm. Three simple models of dust emission were fit to the observations: a single temperature blackbody modified by a power-law emissivity (SMBB), a single temperature blackbody modified by a broken power-law emissivity (BEMBB), and two blackbodies with different temperatures, both modified by the same power-law emissivity (TTMBB). Using these models, we investigate the origin of the submillimeter excess, defined as the submillimeter emission above that expected from SMBB models fit to observations <200 μm. We find that the BEMBB model produces the lowest fit residuals with pixel-averaged 500 μm submillimeter excesses of 27% and 43% for the LMC and SMC, respectively. Adopting gas masses from previous works, the gas-to-dust ratios calculated from our fitting results show that the TTMBB fits require significantly more dust than are available even if all the metals present in the interstellarmedium (ISM) were condensed into dust. This indicates that the submillimeter excess ismore likely to be due to emissivity variations than a second population of colder dust. We derive integrated dust masses of (7.3 ± 1.7) × 105 and (8.3 ± 2.1) × 104 M⊙ for the LMC and SMC, respectively. We find significant correlations between the submillimeter excess and other dust properties; further work is needed to determine the relative contributions of fitting noise and ISM physics to the correlations
dc.format.mimetypeapplication/pdfen_AU
dc.identifier.issn0004-637X
dc.identifier.urihttp://hdl.handle.net/1885/152239
dc.publisherIOP Publishing
dc.sourceThe Astrophysical Journal
dc.titleDust and gas in the magellanic clouds from the heritage Herschel Key Project. I. Dust properties and insights into the origin of the submillimeter excess emission
dc.typeJournal article
dcterms.accessRightsOpen Accessen_AU
local.bibliographicCitation.issue2
local.contributor.affiliationGordon, Karl D., STScI
local.contributor.affiliationRoman-Duval, Julia, Space telescope Science Institute
local.contributor.affiliationCaroline, B. O T, Universite de Strasbourg
local.contributor.affiliationMeixner, Margaret, Space Telescope Science Institute
local.contributor.affiliationBabler, Brian L, University of Wisconsin
local.contributor.affiliationBernard, Jean Ph, CNRS Centre National de la Recherche Scientifique
local.contributor.affiliationBolatto, Alberto, University of Maryland
local.contributor.affiliationBoyer, M L, NASA Goddard Space Flight Center
local.contributor.affiliationClayton, Geoffrey C, Louisiana State University
local.contributor.affiliationEngelbracht, Charles W, University of Arizona
local.contributor.affiliationJameson, Katherine, College of Science, ANU
local.contributor.authoruidJameson, Katherine, u1033291
local.description.notesImported from ARIES
local.identifier.absfor020102 - Astronomical and Space Instrumentation
local.identifier.ariespublicationu4351680xPUB112
local.identifier.citationvolume797
local.identifier.doi10.1088/0004-637X/797/2/85
local.identifier.scopusID2-s2.0-84916241321
local.identifier.thomsonID000346291600013
local.type.statusPublished Version

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