We used Kepler photometry to determine the internal rotation rate of KIC 7661054, a chemically normal γ Dor star on the main sequence at spectral type F2.5 V. The core rotation period of 27.25 ± 0.06 d is obtained from the rotational splittings of a series of dipole g modes. The surface rotation period is calculated from a spectroscopic projected rotation velocity and a stellar radius computed from models. Literature data, obtained without inclusion of macroturbulence as a line-broadening mechanism, imply that the surface rotates much more quickly than the core, while our detailed analysis suggests that the surface may rotate slightly more quickly than the core and that the rotation profile is uniform within the 1σ uncertainties. We discuss...
We have discovered rotationally split core g-mode triplets and surface p-mode triplets and quintuple...
In γ Doradus (γ Dor) stars, the g-mode period spacing shows an approximately linear relation with pe...
International audienceContext. The space-based Kepler mission provided four years of highly precise ...
We used Kepler photometry to determine the internal rotation rate of KIC 7661054, a chemically norma...
With four years of nearly continuous photometry from Kepler, we are finally in a good position to ap...
We have discovered rotationally split core g-mode triplets and surface p-mode triplets and quintuple...
We have found a rotationally split series of core g-mode triplets and surface p-mode multiplets in a...
peer reviewedHelioseismology and asteroseismology of red giant stars have shown that the distributio...
The internal angular momentum distribution of a star is the key to determining its evolution. Fortun...
Context. While rotation has a major impact on stellar structure and evolution, its effects are not w...
Owing to the unprecedented quality and long baseline of Kepler photometry, we are finally in a good ...
International audienceHelioseismology and asteroseismology of red giant stars have shown that distri...
We have discovered rotationally split core g-mode triplets and surface p-mode triplets and quintuple...
We have discovered rotationally split core g-mode triplets and surface p-mode triplets and quintuple...
In γ Doradus (γ Dor) stars, the g-mode period spacing shows an approximately linear relation with pe...
International audienceContext. The space-based Kepler mission provided four years of highly precise ...
We used Kepler photometry to determine the internal rotation rate of KIC 7661054, a chemically norma...
With four years of nearly continuous photometry from Kepler, we are finally in a good position to ap...
We have discovered rotationally split core g-mode triplets and surface p-mode triplets and quintuple...
We have found a rotationally split series of core g-mode triplets and surface p-mode multiplets in a...
peer reviewedHelioseismology and asteroseismology of red giant stars have shown that the distributio...
The internal angular momentum distribution of a star is the key to determining its evolution. Fortun...
Context. While rotation has a major impact on stellar structure and evolution, its effects are not w...
Owing to the unprecedented quality and long baseline of Kepler photometry, we are finally in a good ...
International audienceHelioseismology and asteroseismology of red giant stars have shown that distri...
We have discovered rotationally split core g-mode triplets and surface p-mode triplets and quintuple...
We have discovered rotationally split core g-mode triplets and surface p-mode triplets and quintuple...
In γ Doradus (γ Dor) stars, the g-mode period spacing shows an approximately linear relation with pe...
International audienceContext. The space-based Kepler mission provided four years of highly precise ...