Characterizing the Motion of Solar Magnetic Bright Points at High Resolution
arXiv:1710.04738 · doi:10.3847/1538-4357/aa93e2
Abstract
Magnetic bright points in the solar photosphere, visible in both continuum and G-band images, indicate footpoints of kilogauss magnetic flux tubes extending to the corona. The power spectrum of bright-point motion is thus also the power spectrum of Alfven wave excitation, transporting energy up flux tubes into the corona. This spectrum is a key input in coronal and heliospheric models. We produce a power spectrum of bright-point motion using radiative magnetohydrodynamic simulations, exploiting spatial resolution higher than can be obtained in present-day observations, while using automated tracking to produce large data quantities. We find slightly higher amounts of power at all frequencies compared to observation-based spectra, while confirming the spectrum shape of recent observations. This also provides a prediction for observations of bright points with DKIST, which will achieve similar resolution and high sensitivity. We also find a granule size distribution in support of an observed two-population distribution, and we present results from tracking passive tracers which show a similar power spectrum to that of bright points. Finally, we introduce a simplified, laminar model of granulation, with which we explore the roles of turbulence and of the properties of the granulation pattern in determining bright-point motion.
13 pages, 8 figures. Accepted for publication in ApJ
References in corpus (9)
- Numerical simulations of quiet Sun magnetism: On the contribution from a small-scale dynamo
- Solar Magnetic Tracking. I. Software Comparison and Recommended Practices
- Dynamics of the solar magnetic bright points derived from their horizontal motions
- Characterising motion types of G-band bright points in the quiet Sun
- Time series of high resolution photospheric spectra in a quiet region of the Sun. II. Analysis of the variation of physical quantities of granular structures
- Height-dependent velocity structure of photospheric convection in granules and intergranular lanes with Hinode/SOT
- Kinematics of Magnetic Bright Features in the Solar Photosphere
- Dynamics of small-scale convective motions
- Vortex Flows in the Solar Atmoshpere: Automated Identification and Statistical Analysis
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