A Statistical Study on Photospheric Magnetic Nonpotentiality of Active Regions and Its Relationship with Flares during Solar Cycles 22-23
Xiao Yang, HongQi Zhang, Yu Gao, Juan Guo, GangHua Lin

TL;DR
This study analyzes the relationship between photospheric magnetic nonpotentiality in solar active regions and solar flares over solar cycles 22-23, using a large dataset of magnetograms to identify parameters correlated with solar activity.
Contribution
It provides a comprehensive statistical analysis of multiple magnetic parameters and their correlation with solar cycle progression and flare productivity, highlighting potential predictive indicators.
Findings
Parameters , , and d_{Em} correlate strongly with the solar cycle.
Nonpotentiality parameters are higher during solar maximum periods.
All parameters positively correlate with flare productivity.
Abstract
A statistical study is carried out on the photospheric magnetic nonpotentiality in solar active regions and its relationship with associated flares. We select 2173 photospheric vector magnetograms from 1106 active regions observed by the Solar Magnetic Field Telescope at Huairou Solar Observing Station, National Astronomical Observatories of China, in the period of 1988-2008, which covers most of the 22nd and 23rd solar cycles. We have computed the mean planar magnetic shear angle (\bar{\Delta\phi}), mean shear angle of the vector magnetic field (\bar{\Delta\psi}), mean absolute vertical current density (\bar{|J_{z}|}), mean absolute current helicity density (\bar{|h_{c}|}), absolute twist parameter (|\alpha_{av}|), mean free magnetic energy density (\bar{\rho_{free}}), effective distance of the longitudinal magnetic field (d_{E}), and modified effective distance (d_{Em}) of each…
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