We have discovered rotationally split core g-mode triplets and surface p-mode triplets and quintuplets in a terminal age main-sequence A star, KIC 11145123, that shows both δ Sct p-mode pulsations and γ Dor g-mode pulsations. This gives the first robust determination of the rotation of the deep core and surface of a main-sequence star, essentially model-independently. We find its rotation to be nearly uniform with a period near 100 d, but we show with high confidence that the surface rotates slightly faster than the core. A strong angular momentum transfer mechanism must be operating to produce the nearly rigid rotation, and a mechanism other than viscosity must be operating to produce a more rapidly rotating surface than core. Our asterose...
Context. Transport of angular momentum in stellar interiors is currently not well understood. Astero...
We used Kepler photometry to determine the internal rotation rate of KIC 7661054, a chemically norma...
Context. Asteroseismology allows us to probe stellar interiors. In the case of red giant stars, cond...
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...
We have found a rotationally split series of core g-mode triplets and surface p-mode multiplets in a...
We have discovered rotationally split core g-mode triplets and surface p-mode triplets and quintuple...
The internal angular momentum distribution of a star is the key to determining its evolution. Fortun...
Rotation is expected to have an important influence on the structure and the evolution of stars. How...
KIC 11145123 is one of the Kepler targets that has been actively studied asteroseismically. Its well...
Context. The physical mechanisms driving the transport of angular momentum in stars are not fully un...
Context. Transport of angular momentum in stellar interiors is currently not well understood. Astero...
We used Kepler photometry to determine the internal rotation rate of KIC 7661054, a chemically norma...
Context. Asteroseismology allows us to probe stellar interiors. In the case of red giant stars, cond...
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...
We have found a rotationally split series of core g-mode triplets and surface p-mode multiplets in a...
We have discovered rotationally split core g-mode triplets and surface p-mode triplets and quintuple...
The internal angular momentum distribution of a star is the key to determining its evolution. Fortun...
Rotation is expected to have an important influence on the structure and the evolution of stars. How...
KIC 11145123 is one of the Kepler targets that has been actively studied asteroseismically. Its well...
Context. The physical mechanisms driving the transport of angular momentum in stars are not fully un...
Context. Transport of angular momentum in stellar interiors is currently not well understood. Astero...
We used Kepler photometry to determine the internal rotation rate of KIC 7661054, a chemically norma...
Context. Asteroseismology allows us to probe stellar interiors. In the case of red giant stars, cond...