Realistic modeling of local dynamo processes on the Sun
arXiv:1506.08924 · doi:10.1088/0004-637X/809/1/84
Abstract
Magnetic fields are usually observed in the quiet Sun as small-scale elements that cover the entire solar surface (the `salt and pepper' patterns in line-of-sight magnetograms). By using 3D radiative MHD numerical simulations we find that these fields result from a local dynamo action in the top layers of the convection zone, where extremely weak 'seed' magnetic fields (e.g., from a G) can locally grow above the mean equipartition field, to a stronger than 2000~G field localized in magnetic structures. Our results reveal that the magnetic flux is predominantly generated in regions of small-scale helical downflows. We find that the local dynamo action takes place mostly in a shallow, about 500~km deep, subsurface layer, from which the generated field is transported into the deeper layers by convective downdrafts. We demonstrate that the observed dominance of vertical magnetic fields at the photosphere and horizontal fields above the photosphere can be explained by small-scale magnetic loops produced by the dynamo. Such small-scale loops play an important role in the structure and dynamics of the solar atmosphere and that their detection in observations is critical for understanding the local dynamo action on the Sun.
40pages, 18 figures; accepted to ApJ. arXiv admin note: text overlap with arXiv:1312.0982
References in corpus (16)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- A Substantial Amount of Hidden Magnetic Energy in the Quiet Sun
- Numerical simulations of quiet Sun magnetism: On the contribution from a small-scale dynamo
- A solar surface dynamo
- Emergence of Small-Scale Magnetic Loops in the Quiet Sun Internetwork
- Quiet Sun internetwork magnetic fields from the inversion of Hinode measurements
- Current status of turbulent dynamo theory: From large-scale to small-scale dynamos
- Emergence of small-scale magnetic loops through the quiet solar atmosphere
- Numerical demonstration of fluctuation dynamo at low magnetic Prandtl numbers
- Strong horizontal photospheric magnetic field in a surface dynamo simulation
- The horizontal internetwork magnetic field: numerical simulations in comparison to observations with Hinode
- The mean electro-motive force, current- and cross-helicity under the influence of rotation, magnetic field and shear
- Magnetic field emergence in quiet Sun granules
- Numerical simulation of excitation of solar oscillation modes for different turbulent models
- Multi-wavelength high-resolution observations of a small-scale emerging magnetic flux event and the chromospheric and coronal response
- The problem of small and large scale fields in the solar dynamo
Cited by in corpus (14)
- Numerical simulations of quiet Sun magnetic fields seeded by Biermann battery
- Small-scale dynamo simulations: Magnetic field amplification in exploding granules and the role of deep and shallow recirculation
- Modelling turbulent stellar convection zones: sub-grid scales effects
- Numerical evidence for a small-scale dynamo approaching solar magnetic Prandtl numbers
- On the origin of the magnetic energy in the quiet solar chromosphere
- On the contribution of quiet Sun magnetism to solar irradiance variations: Constraints on quiet Sun variability and grand minimum scenarios
- Development of active regions: flows, magnetic-field patterns and bordering effect
- Methodology for estimating the magnetic Prandtl number and application to solar surface small-scale dynamo simulations
- Implicit large eddy simulations of global solar convection: effects of numerical resolution in non-rotating and rotating cases
- The Rise and Emergence of Untwisted Toroidal Flux Ropes on the Sun
- A Global Survey of EUV Corona Power Spectra
- Connecting Atmospheric Properties and Synthetic Emission of Shock Waves Using 3D RMHD Simulations of Quiet Sun
- The effect of local magnetic fields in quiet regions of stellar atmospheres simulated with MANCHA
- Effect of electromagnetic boundary conditions on the onset of small-scale dynamos driven by convection