Magnetic field emergence in mesogranular-sized exploding granules observed with SUNRISE/IMaX data
arXiv:1110.4555 · doi:10.1051/0004-6361/201117936
Abstract
We report on magnetic field emergences covering significant areas of exploding granules. The balloon-borne mission SUNRISE provided high spatial and temporal resolution images of the solar photosphere. Continuum images, longitudinal and transverse magnetic field maps and Dopplergrams obtained by IMaX onboard SUNRISE are analyzed by Local Correlation Traking (LCT), divergence calculation and time slices, Stokes inversions and numerical simulations are also employed. We characterize two mesogranular-scale exploding granules where 10 Mx of magnetic flux emerges. The emergence of weak unipolar longitudinal fields (100 G) start with a single visible magnetic polarity, occupying their respective granules' top and following the granular splitting. After a while, mixed polarities start appearing, concentrated in downflow lanes. The events last around 20 min. LCT analyses confirm mesogranular scale expansion, displaying a similar pattern for all the physical properties, and divergence centers match between all of them. We found a similar behaviour with the emergence events in a numerical MHD simulation. Granule expansion velocities are around 1 \kms while magnetic patches expand at 0.65 \kms. One of the analyzed events evidences the emergence of a loop-like structure. Advection of the emerging magnetic flux features is dominated by convective motion resulting from the exploding granule due to the magnetic field frozen in the granular plasma. Intensification of the magnetic field occurs in the intergranular lanes, probably because of being directed by the downflowing plasma.
7 pages, 6 figures
References in corpus (10)
- Sunrise: instrument, mission, data and first results
- The Imaging Magnetograph eXperiment (IMaX) for the Sunrise balloon-borne solar observatory
- The Sunrise Mission
- Emergence of Small-Scale Magnetic Loops in the Quiet Sun Internetwork
- Solar surface emerging flux regions: a comparative study of radiative MHD modeling and Hinode SOT observations
- Emergence of small-scale magnetic loops through the quiet solar atmosphere
- Magnetic field emergence in quiet Sun granules
- Mesogranulation and the solar surface magnetic field distribution
- Supersonic Magnetic Upflows in Granular Cells Observed with Sunrise/IMaX
- Mesogranular structure in a hydrodynamical simulation
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- Horizontal flow fields in and around a small active region-- The transition period between flux emergence and decay
- The shrinking Sun: a systematic error in local correlation tracking of solar granulation
- On the polarimetric signature of emerging magnetic loops in the quiet-Sun
- Emergence of small-scale magnetic flux in the quiet Sun
- The solar internetwork. III. Unipolar versus bipolar flux appearance
- Supergranular-scale magnetic flux emergence beneath an unstable filament
- On the Magnetic Nature of an Exploding Granule as Revealed by Sunrise/IMaX
- Evolution of exploding granules from coordinated observations by THEMIS, IRIS, SDO/HMI, and HINODE, and a simulation
- Photospheric plasma and magnetic field dynamics during the formation of solar AR 11190
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- The polarization signature of photospheric magnetic fields in 3D MHD simulations and observations at disk center
- Newly formed downflow lanes in exploding granules in the solar photosphere
- Evidence of quiet Sun chromospheric activity related to an emerging small-scale magnetic loop
- Magnetic Flux Emergence in a Coronal Hole
- Emergence of magnetic flux sheets in the quiet Sun. I. Statistical properties
- Automated detection of exploding granules with SDO/HMI data
- Flux emergence event underneath a filament