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Paper: Fine-scale Magnetic Structures and Flows in Sunspot Simulations
Volume: 454, The 3rd Hinode Science Meeting
Page: 253
Authors: Kitiashvili, I. N.; Kosovichev, A. G.; Wray, A. A.; Mansour, N. N.
Abstract: One of most intriguing processes on the Sun is the formation and dynamics of sunspots and active regions, where magneto-convective conditions are very different from quiet Sun regions. High-resolution observations from Hinode and numerical simulations shed light into these processes. In our 3D radiative MHD simulations we take into account real-gas equation of state, ionization and excitation of all abundant spices, turbulent and magnetic effects. We present recent results of numerical simulations of a top layer of the convective zone and the photosphere in the presence of magnetic field of various strength and inclination. The simulation results explain the filamentary organization of penumbra, reveal the mechanisms of the Evershed effect and the sea-serpent behavior of magnetic field lines, and show the subsurface dynamics of umbral dots as a natural consequence of magnetoconvection processes.
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