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Differential Rotation and Dynamics of the Solar Interior

Identifieur interne : 005240 ( Ncbi/Checkpoint ); précédent : 005239; suivant : 005241

Differential Rotation and Dynamics of the Solar Interior

Auteurs : Thompson [États-Unis] ; Toomre ; Anderson ; Antia ; Berthomieu ; Burtonclay ; Chitre ; Christensen-Dalsgaard ; Corbard ; DeRosa ; Genovese ; Gough ; Haber ; Harvey ; Hill ; Howe ; Korzennik ; Kosovichev ; Leibacher ; Pijpers ; Provost ; Rhodes ; Schou ; Sekii ; Stark ; Wilson

Source :

RBID : pubmed:8662459

Abstract

Splitting of the sun's global oscillation frequencies by large-scale flows can be used to investigate how rotation varies with radius and latitude within the solar interior. The nearly uninterrupted observations by the Global Oscillation Network Group (GONG) yield oscillation power spectra with high duty cycles and high signal-to-noise ratios. Frequency splittings derived from GONG observations confirm that the variation of rotation rate with latitude seen at the surface carries through much of the convection zone, at the base of which is an adjustment layer leading to latitudinally independent rotation at greater depths. A distinctive shear layer just below the surface is discernible at low to mid-latitudes.

PubMed: 8662459


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pubmed:8662459

Le document en format XML

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<div type="abstract" xml:lang="en">Splitting of the sun's global oscillation frequencies by large-scale flows can be used to investigate how rotation varies with radius and latitude within the solar interior. The nearly uninterrupted observations by the Global Oscillation Network Group (GONG) yield oscillation power spectra with high duty cycles and high signal-to-noise ratios. Frequency splittings derived from GONG observations confirm that the variation of rotation rate with latitude seen at the surface carries through much of the convection zone, at the base of which is an adjustment layer leading to latitudinally independent rotation at greater depths. A distinctive shear layer just below the surface is discernible at low to mid-latitudes.</div>
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