The potential of red supergiants as extragalactic abundance probes at low spectral resolution
暂无分享,去创建一个
[1] G. Carraro,et al. EXTRAGALACTIC CHEMICAL ABUNDANCES: DO H ii REGIONS AND YOUNG STARS TELL THE SAME STORY? THE CASE OF THE SPIRAL GALAXY NGC 300 , 2009, 0905.2791.
[2] B. Plez,et al. Radiative hydrodynamics simulations of red supergiant stars - I. interpretation of interferometric observations , 2009, 0907.1860.
[3] Kjell Eriksson,et al. A grid of MARCS model atmospheres for late-type stars. I. Methods and general properties , 2008, 0805.0554.
[4] R. Maiolino,et al. Stellar and Gaseous Abundances in M82 , 2004, astro-ph/0401361.
[6] R. Kudritzki,et al. CHEMICAL ABUNDANCE PATTERNS IN THE INNER GALAXY: THE SCUTUM RED SUPERGIANT CLUSTERS , 2009, 0902.2378.
[7] S. Sagan,et al. Interstellar Abundance Gradients in NGC 2403: Comparison to M33 , 1997 .
[8] H. R. Johnson,et al. Carbon, nitrogen and oxygem abundances in Betelgeuse. , 1984 .
[9] K. Sellgren,et al. The First Stellar Abundance Measurements in the Galactic Center: The M Supergiant IRS 7 , 1999, astro-ph/9909037.
[10] K. Cunha,et al. Chemical Abundances of Luminous Cool Stars in the Galactic Center from High-Resolution Infrared Spectroscopy , 2007, 0707.2610.
[11] B. Plez,et al. MARCS model atmospheres , 2008, 0810.2375.
[12] L. Kewley,et al. Metallicity Calibrations and the Mass-Metallicity Relation for Star-forming Galaxies , 2008, 0801.1849.
[13] R. Kudritzki,et al. A NEW DISTANCE TO M33 USING BLUE SUPERGIANTS AND THE FGLR METHOD , 2009, 0909.0032.
[14] R. Kudritzki,et al. THE CHEMICAL ABUNDANCES IN THE GALACTIC CENTER FROM THE ATMOSPHERES OF RED SUPERGIANTS , 2008, 0811.3179.
[15] W. D. Vacca,et al. THE INFRARED TELESCOPE FACILITY (IRTF) SPECTRAL LIBRARY: COOL STARS , 2009, 0909.0818.
[16] Martin Schwarzschild,et al. On the scale of photospheric convection in red giants and supergiants. , 1975 .
[17] R. Humphreys,et al. The initial mass function for massive stars in the Galaxy and the Magellanic Clouds , 1984 .
[18] Philip Massey,et al. The effective temperature scale of galactic red supergiants : Cool, but not as cool as we thought , 2005 .
[19] Universidad de Concepcion,et al. Quantitative Spectroscopy of 24 A Supergiants in the Sculptor Galaxy NGC 300: Flux-weighted Gravity-Luminosity Relationship, Metallicity, and Metallicity Gradient , 2008, 0803.3654.
[20] R. Kudritzki. Dissecting galaxies with quantitative spectroscopy of the brightest stars in the Universe , 2010, 1002.5039.
[21] E. Josselin,et al. Atmospheric dynamics and the mass loss process in red supergiant stars , 2007, 0705.0266.