On the atmospheric structure and fundamental parameters of red supergiants
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Date
Authors
Wittkowski, M.
Arroyo-Torres, B.
Marcaide, J. M.
Abellan, F. J.
Chiavassa, A.
Freytag, B.
Scholz, M.
Wood, Peter R.
Hauschildt, P. H.
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Cambridge University Press (CUP)
Abstract
We present near-infrared spectro-interferometric studies of red supergiant (RSG)
stars using the VLTI/AMBER instrument, which are compared to previously obtained similar
observations of AGB stars. Our observations indicate spatially extended atmospheric molecular
layers of water vapor and CO, similar as previously observed for Mira stars. Data of VY CMa
indicate that the molecular layers are asymmetric, possibly clumpy. Thanks to the spectrointerferometric
capabilities of the VLTI/AMBER instrument, we can isolate continuum bandpasses,
estimate fundamental parameters of our sources, locate them in the HR diagram, and
compare their positions to recent evolutionary tracks. For the example of VY CMa, this puts it
close to evolutionary tracks of initial mass 25 − 32 M. Comparisons of our data to hydrostatic
model atmospheres, 3d simulations of convection, and 1d dynamic model atmospheres based
on self-excited pulsation models indicate that none of these models can presently explain the
observed atmospheric extensions for RSGs. The mechanism that levitates the atmospheres of
red supergiant is thus a currently unsolved problem.
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Proceedings of the International Astronomical Union