SIMBAD references

2011ApJ...740L..15M - Astrophys. J., 740, L15 (2011/October-2)

GOODS-herschel: gas-to-dust mass ratios and CO-to-H2 conversion factors in normal and starbursting galaxies at high-z.

MAGDIS G.E., DADDI E., ELBAZ D., SARGENT M., DICKINSON M., DANNERBAUER H., AUSSEL H., WALTER F., HWANG H.S., CHARMANDARIS V., HODGE J., RIECHERS D., RIGOPOULOU D., CARILLI C., PANNELLA M., MULLANEY J., LEITON R. and SCOTT D.

Abstract (from CDS):

We explore the gas-to-dust mass ratio (Mgas/Md) and the CO luminosity-to-M gas conversion factor (αCO) of two well-studied galaxies in the Great Observatories Origins Deep Survey North field that are expected to have different star-forming modes, the starburst GN20 at z = 4.05 and the normal star-forming galaxy BzK-21000 at z = 1.52. Detailed sampling is available for their Rayleigh-Jeans emission via ground-based millimeter (mm) interferometry (1.1-6.6 mm) along with Herschel PACS and SPIRE data that probe the peak of their infrared emission. Using the physically motivated Draine & Li models, as well as a modified blackbody function, we measure the dust mass (Mdust) of the sources and find (2.0+0.7–0.6x109) Mfor GN20 and (8.6+0.6–0.9x108) Mfor BzK-21000. The addition of mm data reduces the uncertainties of the derived Mdust by a factor of ∼2, allowing the use of the local Mgas/Md versus metallicity relation to place constraints on the αCO values of the two sources. For GN20 we derive a conversion factor of αCO< 1.0 M/pc2 (K km/s)–1, consistent with that of local ultra-luminous infrared galaxies, while for BzK-21000 we find a considerably higher value, αCO∼4.0 M/pc2 (K km/s)–1, in agreement with an independent kinematic derivation reported previously. The implied star formation efficiency is ∼25 L/M for BzK-21000, a factor of ∼5-10 lower than that of GN20. The findings for these two sources support the existence of different disk-like and starburst star formation modes in distant galaxies, although a larger sample is required to draw statistically robust results.

Abstract Copyright:

Journal keyword(s): galaxies: evolution - galaxies: high-redshift - galaxies: starburst - galaxies: star formation - infrared: galaxies

Simbad objects: 4

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