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Titlebook: Helioseismic Diagnostics of Solar Convection and Activity; Thomas L. Duvall,John W. Harvey,Zdeněk Švestka Book 2001 Springer Science+Busin

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C. Lindsey,D. C. Braunaluable suggestions for improvement, contributed essentially to the final version. We also extend great thanks to our staff for their careful perusal of the entire manuscript and for tracking errata and inaccuracies. Our most heartfelt thank extends again to our “typesetting perfectionist”, 1 withou
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Helioseismic Diagnostics of Solar Convection and Activity978-94-011-4377-6
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Book 2001e deep structure of large-scale convection and flows, emerging active regions, and sunspots. Along with the traditional ‘global‘ helioseismology based on frequencies of resonant oscillation modes, the local-area techniques have become increasingly important for studying the solar interior and the me
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ults on the deep structure of large-scale convection and flows, emerging active regions, and sunspots. Along with the traditional ‘global‘ helioseismology based on frequencies of resonant oscillation modes, the local-area techniques have become increasingly important for studying the solar interior and the me978-94-010-5882-7978-94-011-4377-6
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Can We Get the Bottom B?istribution of emerging photospheric magnetic fields can give us information about the magnetic field strength at the bottom of the convection zone. Distinguishing between the modes of emerging field requires simultaneous magnetic imaging of both sides of the Sun. Correlation of simultaneous Doppler
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The Coupling of Solar Convection and Rotation (Invited Review)ut more recent investigations have begun to explore the distinct nature of turbulent convection. After a brief overview of empirical and numerical results on the related Rayleigh-Bernard system, I will outline the current state of numerical modeling of turbulent convection in rotating, stratified fl
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The Solar Dynamo and Emerging Flux (Invited Review)large poleward drift of active regions as they emerge. The time scale for emergence of an active region from the base of the convection zone to the surface is typically 2-4 months. The equatorial gap in the distribution of active regions has two possible origins; if the toroidal field strength is cl
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On the Twist of Emerging Flux Loops in the Solar Convection Zonelux tubes at the base of the solar convection zone. We find that: (1) In the northern hemisphere, a left-handed twist is generated in the flux tubes as a result of the right-handed tilt or writhe of the emerging loops induced by the Coriolis force. The generated twist increases with the latitude of
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Time-Distance Inversion Methods and Results (Invited Review) in January 1998, was studied from SOHO/MDI for eight days, both before and after its emergence at the surface. The results show a complicated structure of the emerging region in the interior, and suggest that the emerging flux ropes travel very quickly through the depth range of our observations. T
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