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Mapping the core of the Tarantula Nebula with VLT-MUSE

Authors :
Sergio Simón-Díaz
Chris Evans
Joachim Puls
Paul A. Crowther
Norberto Castro
Jorick S. Vink
Fernando Selman
Martin Roth
María Ángel García
Artemio Herrero
Castro, N. [0000-0003-0521-473X]
Vink, J. S. [0000-0002-8445-4397]
Deutsche Forschungsgemeinschaft (DFG)
Agencia Canaria de Investigación, Innovación y Sociedad de la Información (ACIISI)
Agencia Estatal de Investigación (AEI)
Source :
DIGITAL.INTA Repositorio Digital del Instituto Nacional de Técnica Aeroespacial, instname
Publication Year :
2021
Publisher :
EDP Sciences, 2021.

Abstract

We present the spectroscopic analysis of 333 OB-type stars extracted from VLT-MUSE observations of the central 30 x 30 pc of NGC 2070 in the Tarantula Nebula on the Large Magellanic Cloud, the majority of which are analysed for the the first time. The distribution of stars in the spectroscopic Hertzsprung-Russell diagram (sHRD) shows 281 stars in the main sequence. We find two groups in the main sequence, with estimated ages of 2.1$\pm$0.8 and 6.2$\pm$2 Myr. A subgroup of 52 stars is apparently beyond the main sequence phase, which we consider to be due to emission-type objects and/or significant nebular contamination affecting the analysis. As in previous studies, stellar masses derived from the sHRD are systematically larger than those obtained from the conventional HRD, with the differences being largest for the most massive stars. Additionally, we do not find any trend between the estimated projected rotational velocity and evolution in the sHRD. The projected rotational velocity distribution presents a tail of fast rotators that resembles findings in the wider population of 30 Doradus. We use published spectral types to calibrate the HeI$\lambda$4921/HeII$\lambda$5411 equivalent-width ratio as a classification diagnostic for early-type main sequence stars when the classical blue-visible region is not observed. Our model-atmosphere analyses demonstrate that the resulting calibration is well correlated with effective temperature.<br />Comment: 19 pages, 12 figures. Accepted in A&A

Details

ISSN :
14320746 and 00046361
Volume :
648
Database :
OpenAIRE
Journal :
Astronomy & Astrophysics
Accession number :
edsair.doi.dedup.....8c3893d0862e8a6afc3431161c216b9b
Full Text :
https://doi.org/10.1051/0004-6361/202040008