Convection and the Origin of Evershed Flows
arXiv:0905.0918 · doi:10.1007/978-3-642-02859-5_18
Abstract
Numerical simulations have by now revealed that the fine scale structure of the penumbra in general and the Evershed effect in particular is due to overturning convection, mainly confined to gaps with strongly reduced magnetic field strength. The Evershed flow is the radial component of the overturning convective flow visible at the surface. It is directed outwards -- away from the umbra -- because of the broken symmetry due to the inclined magnetic field. The dark penumbral filament cores visible at high resolution are caused by the 'cusps' in the magnetic field that form above the gaps. Still remaining to be established are the details of what determines the average luminosity of penumbrae, the widths, lengths, and filling factors of penumbral filaments, and the amplitudes and filling factors of the Evershed flow. These are likely to depend at least partially also on numerical aspects such as limited resolution and model size, but mainly on physical properties that have not yet been adequately determined or calibrated, such as the plasma beta profile inside sunspots at depth and its horizontal profile, the entropy of ascending flows in the penumbra, etc.
13 pages, 7 figures. To appear in "Magnetic Coupling between the Interior and the Atmosphere of the Sun", eds. S.S. Hasan and R.J. Rutten, Astrophysics and Space Science Proceedings, Springer-Verlag, Heidelberg, Berlin, 2009
References in corpus (7)
- Radiative MHD simulation of sunspot structure
- Magneto-convection in a sunspot umbra
- Fine structure, magnetic field and heating of sunspot penumbrae
- MHD simulations of penumbra fine structure
- Magnetostatic penumbra models with field-free gaps
- On the fine structure of the sunspot penumbrae. II. The nature of the Evershed flow
- Convection and the origin of Evershed flows in sunspot penumbrae
Cited by in corpus (9)
- Numerical sunspot models: Robustness of photospheric velocity and magnetic field structure
- Penumbral fine structure and driving mechanisms of large-scale flows in simulated sunspots
- Modeling the Subsurface Structure of Sunspots
- Upflows in the central dark lane of sunspot light bridges
- Deep probing of the photospheric sunspot penumbra: no evidence for magnetic field-free gaps
- Striation and convection in penumbral filaments
- SST/CRISP Observations of Convective Flows in a Sunspot Penumbra
- Searching for overturning convection in penumbral filaments: slit spectroscopy at 0.2 arcsec resolution
- Kinematics and Magnetic Properties of a Light Bridge in a Decaying Sunspot