Doppler Acoustic Diagnostics of Subsurface Solar Magnetic Structure

Astronomy and Astrophysics – Astronomy

Scientific paper

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Sun: Activity, Sun: Interior, Sun: Magnetic Fields, Sun: Oscillations

Scientific paper

We used the Bartol-NSO-NASA South Pole helioseismic observations of 1991 January to probe the subsurface structure of active regions to depths of ˜15,000 km. The helioseismic signature we particularly examine is intended to register acoustic Doppler effects caused by horizontal flows associated with the active region. We propose to show that the Doppler acoustic signature of horizontal flows is particularly well suited for deep subsurface diagnostics in terms of vertical discrimination of the structure. This study is based primarily on observations of NOAA Active Regions 6431, 6432, 6440, and 6442 between 1991 January 1 and January 8. We interpret the acoustic signatures we find in terms of a general outflow of the solar medium surrounding the active region. The acoustic signatures are strongly dependent on wavenumber, which suggests an outflow that is quite weak near the surface, the upper 4000 km of the subphotosphere, but which increases strongly with depth to velocities of several hundred meters per second at 15,000 km. This depth profile evolves rapidly as the active region matures. Young active regions show a strong outflow signature for waves that explore depths between 4000 and 8000 km. As the active region matures, the outflow vacates these intermediate layers and submerges to depths mostly below 8000 km.
We examine the location of AR 6442 for a possible preemergence signature. We also show evidence for extended, relatively superficial flows in the quiet Sun between the active region bands directed roughly into the active region bands.

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