The State of Self-Organized Criticality of the Sun During the Last 3 Solar Cycles. I. Observations
arXiv:1006.4861 · doi:10.1007/s11207-011-9755-0
Abstract
We analyze the occurrence frequency distributions of peak fluxes , total fluxes , and durations of solar flares over the last three solar cycles (during 1980--2010) from hard X-ray data of HXRBS/SMM, BATSE/CGRO, and RHESSI. From the synthesized data we find powerlaw slopes with mean values of for the peak flux, for the total flux, and for flare durations. We find a systematic anti-correlation of the powerlaw slope of peak fluxes as a function of the solar cycle, varying with an approximate sinusoidal variation , with a mean of , a variation of , a solar cycle period yrs, and a cycle minimum time . The powerlaw slope is flattest during the maximum of a solar cycle, which indicates a higher magnetic complexity of the solar corona that leads to an overproportional rate of powerful flares.
subm. to Solar Physics
References in corpus (2)
Cited by in corpus (26)
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