Dynamic properties of bright points in an active region
arXiv:1405.3923 · doi:10.1051/0004-6361/201322987
Abstract
Context. Bright points (BPs) are small-scale, magnetic features ubiquitous across the solar surface. Previously, we have observed and noted their properties for quiet Sun regions. Here, we determine the dynamic properties of BPs using simultaneous quiet Sun and active region data. Methods. High spatial and temporal resolution G-band observations of active region AR11372 were obtained with the Rapid Oscillations in the Solar Atmosphere instrument at the Dunn Solar Telescope. Three subfields of varying polarity and magnetic flux density were selected with the aid of magnetograms obtained from the Helioseismic and Magnetic Imager on board the Solar Dynamics Observatory. Bright points within these subfields were subsequently tracked and analysed. Results. It is found that BPs within active regions display attenuated velocity distributions with an average horizontal velocity of ~0.6 km/s, compared to the quiet region which had an average velocity of 0.9 km/s. Active region BPs are also ~21% larger than quiet region BPs and have longer average lifetimes (~132s) than their quiet region counterparts (88 s). No preferential flow directions are observed within the active region subfields. The diffusion index (gamma) is estimated at ~1.2 for the three regions. Conclusions. We confirm that the dynamic properties of BPs arise predominately from convective motions. The presence of stronger field strengths within active regions is the likely reason behind the varying properties observed. We believe that larger amounts of magnetic flux will attenuate BP velocities by a combination of restricting motion within the intergranular lanes and by increasing the number of stagnation points produced by inhibited convection. Larger BPs are found in regions of higher magnetic flux density and we believe that lifetimes increase in active regions as the magnetic flux stabilises the BPs.
Accepted for publication in A&A, 9 pages, 3 figures
References in corpus (6)
- Convectively driven vortex flows in the Sun
- Small-scale solar magnetic fields
- Do all Flares have White Light Emission?
- Magnetic properties of G-band bright points in a sunspot moat
- Dynamics of the solar magnetic bright points derived from their horizontal motions
- Structure and Dynamics of Isolated Internetwork Ca II H Bright Points Observed by Sunrise
Cited by in corpus (10)
- Characterising motion types of G-band bright points in the quiet Sun
- The magnetic properties of photospheric magnetic bright points with high resolution spectropolarimetry
- Kinematics of Magnetic Bright Features in the Solar Photosphere
- Super-diffusion versus competitive advection: a simulation
- The dark side of solar photospheric G-band bright points
- Analysis of quiet-sun turbulence on the basis of SDO/HMI and Goode Solar Telescope data
- Possible Signature of Sausage Waves in Photospheric Bright Points
- Dispersion of the solar magnetic flux in undisturbed photosphere as derived from SDO/HMI data
- Dispersion of small magnetic elements inside active regions on the Sun
- High-resolution spectropolarimetric observations of the temporal evolution of magnetic fields in photospheric bright points