Properties of quasi-periodic pulsations in solar flares from a single active region
C. E. Pugh, V. M. Nakariakov, A.-M. Broomhall, A. V. Bogomolov, I. N., Myagkova

TL;DR
This study analyzes quasi-periodic pulsations (QPPs) in solar flares from a single active region, finding that QPPs are common and likely caused by diverse mechanisms, with little correlation to active region properties.
Contribution
It provides the first detailed statistical analysis of QPPs in flares from a single active region, demonstrating their prevalence and independence from large-scale AR characteristics.
Findings
37 out of 181 flares showed evidence of QPPs
QPP periods weakly correlate with flare amplitude and duration
No correlation between QPP periods and AR size or magnetic field
Abstract
We investigate the properties of a set of solar flares originating from a single active region (AR) that exhibit QPPs, and look for signs of the QPP periods relating to AR properties. The AR studied, best known as NOAA 12192, was unusually long-lived and produced 181 flares. Data from the GOES, EVE, Fermi, Vernov and NoRH observatories were used to determine if QPPs were present in the flares. For the soft X-ray GOES and EVE data, the time derivative of the signal was used. Power spectra of the time series data (without any form of detrending) were inspected, and flares with a peak above the 95% confidence level in the spectrum were labelled as having candidate QPPs. The confidence levels were determined taking account of uncertainties and the possible presence of red noise. AR properties were determined using HMI line of sight magnetograms. A total of 37 flares (20% of the sample) show…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Geophysics and Gravity Measurements · Astro and Planetary Science
