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Radiative properties of stellar plasmas and open challenges
Authors:S Turck-Chi??ze  G Loisel  D Gilles  L Piau  C Blancard  T Blenski  M Busquet  T Caillaud  P Coss??  F Delahaye  G Faussurier  J Fariaut  F Gilleron  J A Guzik  J Harris  D P Kilcrease  N H Magee  J C Pain  Q Porcherot  M Poirier  G Soullier  C J Zeippen  S Bastiani-Ceccotti  C Reverdin  V Silvert  F Thais  B Villette
Institution:1. CEA/DSM/IRFU/SAp, CE Saclay, 91190, Gif sur Yvette, France
2. CEA/DSM/IRAMIS/SPAM, CE Saclay, 91190, Gif sur Yvette, France
3. CEA/DAM/DIF, 91297, Arpajon, France
4. LPGP, Universit?? Paris Sud, 91405, Orsay Cedex, France
5. LERMA, Observatoire de Paris, ENS, UPMC, UCP, CNRS, 5 Place Jules Janssen, 92195, Meudon, France
6. Theoretical Division, LANL, Los Alamos, NM, 87545, USA
7. AWE, Reading, Berkshire, RG7 4PR, UK
8. LULI, Ecole Polytechnique, CNRS, CEA, UPMC, 91128, Palaiseau Cedex, France
Abstract:The lifetime of solar-like stars, the envelope structure of more massive stars, and stellar acoustic frequencies largely depend on the radiative properties of the stellar plasma. Up to now, these complex quantities have been estimated only theoretically. The development of the powerful tools of helio- and astero- seismology has made it possible to gain insights on the interiors of stars. Consequently, increased emphasis is now placed on knowledge of the monochromatic opacity coefficients. Here we review how these radiative properties play a role, and where they are most important. We then concentrate specifically on the envelopes of ?? Cephei variable stars. We discuss the dispersion of eight different theoretical estimates of the monochromatic opacity spectrum and the challenges we need to face to check these calculations experimentally.
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