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Related papers: Dipolar modes in luminous red giants

200 papers

Radiative diffusion damps acoustic modes at large comoving wavenumber (k) before decoupling (``Silk damping''). In a simple WKB analysis, neglecting moments of the temperature distribution beyond the quadrupole, damping appears in the…

Cosmology and Nongalactic Astrophysics · Physics 2014-11-20 Todd A. Thompson

(ABRIDGED) We use a fully self-consistent evolutionary code to follow the rotational evolution of red giants, making a comprehensive attempt to assess the role of rotationally induced mixing in the development of abundance anomalies in…

Astrophysics · Physics 2009-11-10 Julio Chaname , Marc Pinsonneault , Donald Terndrup

The space-borne missions CoRoT and Kepler have already brought stringent constraints on the internal structure of low-mass evolved stars, a large part of which results from the detection of mixed modes. However, all the potential of these…

Solar and Stellar Astrophysics · Physics 2020-02-12 C. Pinçon , M. -J. Goupil , K. Belkacem

The structures of the outer atmospheres of red giants are very complex. The notion of large optically thick molecular spheres around the stars (MOLspheres) has been invoked in order to explain e.g. spectro-interferometric observations.…

Solar and Stellar Astrophysics · Physics 2014-12-10 N. Ryde , J. Lambert , M. Farzone , M. J. Richter , E. Josselin , G. M. Harper , K. Eriksson , T. K. Greathouse

First-ascent red giants with masses below about $2\,M_\odot$ ignite helium in their degenerate core as a flash. Stellar evolution codes predict that the He flash consists of a series of consecutive subflashes. The detection of mixed modes…

Solar and Stellar Astrophysics · Physics 2018-12-05 S. Deheuvels , K. Belkacem

The {\gamma} Dor pulsating stars present high-order gravity modes, which make them important targets in the intermediate-and low-mass main-sequence region of the Hertzsprung-Russell diagram. Whilst we have only access to rotation in the…

Solar and Stellar Astrophysics · Physics 2017-09-20 S. J. A. J. Salmon , R. -M. Ouazzani , V. Antoci , T. R. Bedding , S. J. Murphy

Solar-like oscillations are excited stochastically by convection. They occur in stars with an outer convection zone, which includes the Sun and other stars on the lower main sequence, as well as cool subgiants and red giants. This chapter…

Solar and Stellar Astrophysics · Physics 2011-07-12 Timothy R. Bedding

CoRoT and Kepler observations of red giants reveal rich spectra of non-radial solar-like oscillations allowing to probe their internal structure. We compare the theoretical spectrum of two red giants in the same region of the HR diagram but…

Solar and Stellar Astrophysics · Physics 2015-06-12 M. Grosjean , M. A. Dupret , K. Belkacem , J. Montalban , A. Noels , R. Samadi

Asteroseismology with the space-borne missions CoRoT and Kepler provides a powerful mean of testing the modeling of transport processes in stars. Rotational splittings are currently measured for a large number of red giant stars and can…

Solar and Stellar Astrophysics · Physics 2015-06-12 M. J. Goupil , B. Mosser , J. P. Marques , R. M. Ouazzani , K. Belkacem , Y. Lebreton , R. Samadi

The granulation pattern that we observe on the surface of the Sun is due to hot plasma from the interior rising to the photosphere where it cools down, and descends back into the interior at the edges of granules. This is the visible…

The Kepler satellite has provided photometric timeseries data of unprecedented length, duty cycle and precision. To fully analyse these data for the tens of thousands of stars observed by Kepler, automated methods are a prerequisite. Here…

Solar and Stellar Astrophysics · Physics 2015-06-23 Abhisek Datta , Anwesh Mazumdar , Umang Gupta , Saskia Hekker

Kepler allows the measurement of starspot variability in a large sample of field red giants for the first time. With a new method that combines autocorrelation and wavelet decomposition, we measure 361 rotation periods from the full set of…

Solar and Stellar Astrophysics · Physics 2017-09-20 T. Ceillier , J. Tayar , S. Mathur , D. Salabert , R. A. Garcia , D. Stello , M. H. Pinsonneault , J. van Saders , P. G. Beck , S. Bloemen

In order to understand the periodic and semi-periodic variations of luminous O- B- A-type stars, linear nonadiabatic stability analyses for radial and nonradial oscillations have been performed for massive evolutionary models ($8M_\odot -…

Solar and Stellar Astrophysics · Physics 2015-05-20 Hideyuki Saio

When low- and intermediate-mass stars evolve off the main sequence, they expand and cool into the red giant stages of evolution, which include those associated with shell H burning (the red giant branch), core He burning (the red clump),…

Clear power excess in a frequency range typical for solar-type oscillations in red giants has been detected in more than 1000 stars, which have been observed during the first 138 days of the science operation of the NASA Kepler satellite.…

Observations of mixed modes in evolved low-mass stars enable us to probe the properties of not only the outer envelope of these stars, but also their deep layers. Among the seismic parameters associated with mixed modes, the gravity offset,…

Solar and Stellar Astrophysics · Physics 2019-06-26 C. Pinçon , M. Takata , B. Mosser

The continuous high-precision photometric observations provided by the CoRoT and Kepler space missions have allowed us to better understand the structure and dynamics of red giants using asteroseismic techniques. A small fraction of these…

An attempt at understanding downward overshooting in the convective envelopes of post-main-sequence stars has been made on the basis of three-dimensional large-eddy simulations, using artificially modified OPAL opacity and taking into…

Solar and Stellar Astrophysics · Physics 2016-03-08 Chun-Lin Tian , Li-Cai Deng , Kwing-Lam Chan

The detection of oscillations with a mixed character in subgiants and red giants allows us to probe the physical conditions in their cores. With these mixed modes, we aim at determining seismic markers of stellar evolution. Kepler…

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