Vortices in simulations of solar surface convection
arXiv:1108.0800 · doi:10.1051/0004-6361/201117441
Abstract
We report on the occurrence of small-scale vortices in simulations of the convective solar surface. Using an eigenanalysis of the velocity gradient tensor, we find the subset of high vorticity regions in which the plasma is swirling. The swirling regions form an unsteady, tangled network of filaments in the turbulent downflow lanes. Near-surface vertical vortices are underdense and cause a local depression of the optical surface. They are potentially observable as bright points in the dark intergranular lanes. Vortex features typically exist for a few minutes, during which they are moved and twisted by the motion of the ambient plasma. The bigger vortices found in the simulations are possibly, but not necessarily, related to observations of granular-scale spiraling pathlines in "cork animations" or feature tracking.
11 pages, 13 figures, accepted for publication in A&A, complementary movies at http://www.mps.mpg.de/homes/moll/strudel/papermovies/
References in corpus (5)
Cited by in corpus (46)
- Solar science with the Atacama Large Millimeter/submillimeter Array - A new view of our Sun
- On the prevalence of small-scale twist in the solar chromosphere and transition region
- Solar Magnetized "Tornadoes": Relation to Filaments
- Evidence for the photospheric excitation of incompressible chromospheric waves
- Alfvén waves in simulations of solar photospheric vortices
- Three-dimensional simulations of solar magneto-convection including effects of partial ionization
- DeepVel: deep learning for the estimation of horizontal velocities at the solar surface
- Vortices, shocks, and heating in the solar photosphere: effect of a magnetic field
- Three-dimensional simulations of near-surface convection in main-sequence stars - I. Overall structure
- Ubiquitous Solar Eruptions Driven by Magnetized Vortex Tubes
- Three-dimensional simulations of near-surface convection in main-sequence stars - II. Properties of granulation and spectral lines
- 3D Simulations of Magnetohydrodynamic Waves in the Magnetized Solar Atmosphere
- Comparison of solar photospheric bright points between SUNRISE observations and MHD simulations
- On the plasma flow inside magnetic tornadoes on the Sun
- Vortex Flow Properties in Simulations of Solar Plage Region: Evidence for their role in chromospheric heating
- The Alfvénic nature of chromospheric swirls
- Characterising motion types of G-band bright points in the quiet Sun
- Persistent magnetic vortex flow at a supergranular vertex
- A Comprehensive Radiative Magnetohydrodynamics Simulation of Active Region Scale Flux Emergence from the Convection Zone to the Corona
- Vortex Flows in the Solar Chromosphere -- I. Automatic detection method
- A solar coronal loop in a box: Energy generation and heating
- First simultaneous SST/CRISP and IRIS observations of a small-scale quiet Sun vortex
- An innovative and automated method for vortex identification. I. Description of the SWIRL algorithm
- Vortices evolution in the solar atmosphere: A dynamical equation for the swirling strength
- Could switchbacks originate in the lower solar atmosphere? I. Formation mechanisms of switchbacks
- Hall instability of solar flux tubes
- Convectively driven sinks and magnetic fields in the quiet Sun
- Thermodynamic fluctuations in solar photospheric three-dimensional convection simulations and observations
- Unveiling the magnetic nature of chromospheric vortices
- Non-magnetic photospheric bright points in 3D simulations of the solar atmosphere
- Magnetic diffusion driven shear instability of solar flux tubes
- Evolution of small-scale magnetic elements in the vicinity of granular-size swirl convective motions
- Multi-Scale Deep Learning for Estimating Horizontal Velocity Fields on the Solar Surface
- Swirls in the Solar Corona
- On the relationship between G-band bright point dynamics and their magnetic field strengths
- Analysing the effects of apodizing windows on local correlation tracking using Nirvana simulations of convection
- Dynamics of small-scale convective motions
- Influence of ambipolar and Hall effects on vorticity in 3D simulations of magneto-convection
- Spectro-polarimetric simulations of the solar limb: absorption-emission FeI and line profiles and torsional flows in the intergranular magnetic flux concentrations
- The non-ideal finite Larmor radius effect in the solar atmosphere
- Geometric properties of acoustic waves generated by a point source in solar-like interior: effects of acoustic cut-off frequency
- Viscous Heating and Instabilities in the Partially Ionized Solar Atmosphere
- A persistent quiet-Sun small-scale tornado. II. Oscillations
- A new view of the solar interface region from the Interface Region Imaging Spectrograph (IRIS)
- Small-scale vortical motions in cool stellar atmospheres
- On the linear structure of the interlaced Alfvén vortices in the tail of Uranus at solstice