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Quasi-Periodic Pulsations During the Impulsive and Decay Phases of an X-Class FlareQuasi-periodic pulsations (QPPs) are often observed in X-ray emission from solar flares. To date, it is unclear what their physical origins are. Here, we present a multi-instrument investigation of the nature of QPP during the impulsive and decay phases of the X1.0 flare of 2013 October 28. We focus on the character of the fine structure pulsations evident in the soft X-ray (SXR) time derivatives and compare this variability with structure across multiple wavelengths including hard X-ray and microwave emission. We find that during the impulsive phase of the flare, high correlations between pulsations in the thermal and non-thermal emissions are seen. A characteristic timescale of 20 s is observed in all channels and a second timescale of 55 s is observed in the non-thermal emissions. SXR pulsations are seen to persist into the decay phase of this flare, up to 20 minutes after the non-thermal emission has ceased. We find that these decay phase thermal pulsations have very small amplitude and show an increase in characteristic timescale from 40 s up to 70 s. We interpret the bursty nature of the co-existing multi-wavelength QPPs during the impulsive phase in terms of episodic particle acceleration and plasma heating. The persistent thermal decay phase QPPs are most likely connected with compressive magnetohydrodynamic processes in the post-flare loops such as the fast sausage mode or the vertical kink mode.
Document ID
20170003200
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Hays, L. A.
(Trinity Coll. Dublin, Ireland)
Gallagher, P. T.
(Trinity Coll. Dublin, Ireland)
Dennis, B. R.
(NASA Goddard Space Flight Center Greenbelt, MD United States)
Ireland, J.
(Adnet Systems, Inc. Greenbelt, MD, United States)
Inglis, A. R.
(Catholic Univ. of America Washington, DC, United States)
Ryan, D. F.
(Universities Space Research Association Greenbelt, MD, United States)
Date Acquired
April 7, 2017
Publication Date
August 16, 2016
Publication Information
Publication: The Astrophysical Journal Letters
Publisher: The American Astronomical Society
Volume: 827
Issue: 2
ISSN: 2041-8205
e-ISSN: 2041-8213
Subject Category
Solar Physics
Report/Patent Number
GSFC-E-DAA-TN40859
Funding Number(s)
CONTRACT_GRANT: NNG12PL17C
CONTRACT_GRANT: NNG11PL10A
CONTRACT_GRANT: NNH15CO48B
Distribution Limits
Public
Copyright
Other

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