The extinction law inside the 30 Doradus nebula
arXiv:1408.4786 · doi:10.1093/mnras/stu1694
Abstract
We have studied the interstellar extinction in a field of ~3' x 3' at the core of the 30 Doradus nebula, including the central R136 cluster, in the Large Magellanic Cloud. Observations at optical and near-infrared wavelengths, obtained with the WFC3 camera on board the Hubble Space Telescope, show that the stars belonging to the red giant clump are spread across the colour-magnitude diagrams because of the considerable and uneven levels of extinction in this region. Since these stars share very similar physical properties and are all at the same distance, they allow us to derive the absolute extinction in a straightforward and reliable way. Thus we have measured the extinction towards about 180 objects and the extinction law in the range 0.3 - 1.6 micron. At optical wavelengths, the extinction curve is almost parallel to that of the diffuse Galactic interstellar medium. Taking the latter as a template, the value of Rv = 4.5 +/- 0.2 that we measure indicates that in the optical there is an extra grey component due to a larger fraction of large grains. At wavelengths longer than ~1 micron, the contribution of this additional component tapers off as lambda^-1.5, like in the Milky Way, suggesting that the nature of the grains is otherwise similar to those in our Galaxy, but with a ~2.2 times higher fraction of large grains. These results are consistent with the addition of "fresh" large grains by supernova explosions, as recently revealed by Herschel and ALMA observations of SN 1987A.
14 pages, 11 figures, accepted for publication in MNRAS. Updated references
References in corpus (4)
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- New Optical Reddening Maps of the Large and Small Magellanic Clouds
- The VLT-FLAMES Tarantula Survey XVI. The optical+NIR extinction laws in 30 Doradus and the photometric determination of the effective temperatures of OB stars
- Chemical composition and mixing in giant HII regions: NGC3603, 30Doradus, and N66
Cited by in corpus (14)
- Weighing Melnick 34: the most massive binary system known
- Differential reddening in the direction of 56 Galactic globular clusters
- Photometric determination of the mass accretion rates of pre-main sequence stars. V. Recent star formation in the 30 Dor nebula
- The Cepheid distance to the maser-host galaxy NGC 4258: Studying systematics with the Large Binocular Telescope
- Extending the extinction law in 30 Doradus to the infrared with JWST
- High Resolution HST Imaging Survey of Local Star-Forming Galaxies I: Spatially-Resolved Obscured Star Formation with H and Paschen- Recombination Lines
- Protoplanetary discs around sun-like stars appear to live longer when the metallicity is low
- First results from SAM-FP: Fabry-Perot observations with ground-layer adaptive optics - the structure and kinematics of the core of 30 Doradus
- High contrast and resolution near infrared photometry of the core of R136
- Extinction and dust/gas ratio in the H I ridge region of the LMC based on the IRSF/SIRIUS near-infrared survey
- Ultraviolet extinction properties of the 30 Dor Nebula and interpreting observations of starburst clusters
- Extinction towards the cluster R136 in the Large Magellanic Cloud: An extinction law from the near-infrared to the ultraviolet
- Spectral characterisation of the extinction properties of NGC 3603 using JWST NIRSpec
- Anomalous extinction towards NGC 1938