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  5. Magnetic Energy Balance in the Quiet Sun on Supergranular Spatial and Temporal Scales
 
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Magnetic Energy Balance in the Quiet Sun on Supergranular Spatial and Temporal Scales

Author(s)
Giannattasio, Fabio  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma2, Roma, Italia  
Consolini, Giuseppe  
INAF—Istituto di Astrofisica e Planetologia Spaziali, Via del Fosso del Cavaliere  
Berrilli, Francesco  
University of Rome Tor Vergata  
Del Moro, Dario  
University of Rome Tor Vergata  
Language
English
Obiettivo Specifico
1A. Geomagnetismo e Paleomagnetismo
Status
Published
JCR Journal
JCR Journal
Journal
The Astrophysical Journal  
Issue/vol(year)
1/904 (2020)
Publisher
IOP
Pages (printed)
id 7
Date Issued
2020
DOI
10.3847/1538-4357/abbb36
URI
https://www.earth-prints.org/handle/2122/14140
Abstract
Small-scale magnetic fields are ubiquitous in the quiet solar photosphere and may store and transfer huge amounts of energy to the upper atmospheric layers. For this reason, it is fundamental to constrain the energetics of the quiet Sun. By taking advantage of a 24 hr long magnetogram time series acquired by the Hinode mission without interruption, we computed, for the first time, the average rate of change of magnetic energy density on supergranular spatial and temporal scales. We found that the regions where this quantity is positive correspond with the longest magnetic field decorrelation times, with the latter being consistent with the timescales of magnetic energy density variation. This suggests that, on average, the energy provided by photospheric electric and magnetic fields and current density is effective in sustaining the magnetic fields in the network.
Type
article
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Giannattasio&2020_ApJ_904_7.pdf

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