Numerical simulations of sunspot decay: On the penumbra -- Evershed flow -- moat flow connection
arXiv:1511.01410 · doi:10.1088/0004-637X/814/2/125
Abstract
We present a series of high-resolution sunspot simulations that cover a time span of up to 100 hours. The simulation domain extends about 18 Mm in depth beneath the photosphere and 98 Mm horizontally. We use open boundary conditions that do not maintain the initial field structure against decay driven by convective motions. We consider two setups: A sunspot simulation with penumbra, and a "naked-spot" simulation in which we removed the penumbra after 20 hours through a change in the magnetic top boundary condition. While the sunspot has an Evershed outflow of 3-4 km/s, the naked spot is surrounded by an inflow of 1-2 km/s in close proximity. However, both spots are surrounded by an outflow on larger scales with a few 100 m/s flow speed in the photosphere. While the sunspot has almost constant magnetic flux content for the simulated time span of 3-4 days, the naked spot decays steadily at a rate of Mx/day. A region with reduced downflow filling factor, which is more extended for the sunspot, surrounds both spots. The absence of downflows perturbs the upflow/downflow massflux balance and leads to a large-scale radially overturning flow system, the photospheric component of this flow is to the observable moat flow. The reduction of the downflow filling factor also inhibits submergence of magnetic field in the proximity of the spots, which stabilizes them against decay. While this effect is present for both spots, it is more pronounced for the sunspot and explains the almost stationary magnetic flux content.
14 pages, 11 figues, accepted for publication in ApJ
References in corpus (13)
- Numerical simulations of quiet Sun magnetism: On the contribution from a small-scale dynamo
- Penumbral structure and outflows in simulated sunspots
- MHD simulations of penumbra fine structure
- Convection and the origin of Evershed flows in sunspot penumbrae
- Flow Field Evolution of a Decaying Sunspot
- Traveling Waves of Magnetoconvection and the Origin of the Evershed Effect in Sunspots
- Magnetic Flux Loss and Flux Transport in a Decaying Active Region
- Moat flow in the vicinity of sunspots for various penumbral configurations
- On the Moat-Penumbra Relation
- Anomalous flows in a sunspot penumbra
- Time-Distance Helioseismology of Two Realistic Sunspot Simulations
- Magnetic topology of a naked sunspot: Is it really naked?
- Moat flow system around sunspots in shallow subsurface layers
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