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1.
Science ; 324(5934): 1540-2, 2009 Jun 19.
Article in English | MEDLINE | ID: mdl-19541991

ABSTRACT

Seismology of stars provides insight into the physical mechanisms taking place in their interior, with modes of oscillation probing different layers. Low-amplitude acoustic oscillations excited by turbulent convection were detected four decades ago in the Sun and more recently in low-mass main-sequence stars. Using data gathered by the Convection Rotation and Planetary Transits mission, we report here on the detection of solar-like oscillations in a massive star, V1449 Aql, which is a known large-amplitude (beta Cephei) pulsator.

2.
Science ; 318(5852): 922-3, 2007 Nov 09.
Article in English | MEDLINE | ID: mdl-17991847
3.
Science ; 309(5744): 2189-91, 2005 Sep 30.
Article in English | MEDLINE | ID: mdl-16195453

ABSTRACT

The Sun's rotation profile and lithium content have been difficult to understand in the context of conventional models of stellar evolution. Classical hydrodynamic models predict that the solar interior must rotate highly differentially, in disagreement with observations. It has recently been shown that internal waves produced by convection in solar-type stars produce an asymmetric, shear layer oscillation, similar to Earth's quasi-biennial oscillation, that leads to efficient angular momentum redistribution from the core to the envelope. We present results of a model that successfully reproduces both the rotation profile and the surface abundance of lithium in solar-type stars of various ages.

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