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Interplanetary Type II Radio Bursts from Wind/WAVES and Sustained Gamma-Ray Emission from Fermi/LAT: Evidence for Shock SourceWe present quantitative evidence that interplanetary type II radio bursts and sustained gamma-ray emission (SGRE) events from the Sun are closely related. Out of about 30 SGRE events reported in Share et al. we consider 13 events that had a duration exceeding 5 hr to exclude any are-impulsive phase gamma-rays. The SGRE duration also has a linear relation with the ending frequency of the bursts. The synchronism between the ending times of SGRE and the type II emission strongly supports the idea that the same shock accelerates electrons to produce type II bursts and protons (>300 MeV) that propagate from the shock to the solar surface to produce SGRE via pion decay. The acceleration of high-energy particles is confirmed by the associated solar energetic particle (SEP) events detected at Earth and/or at the Solar Terrestrial Relations Observatory spacecraft. Furthermore, the presence of >300 MeV protons is corroborated by the fact that the underlying coronal mass ejections (CMEs) had properties identical to those associated with ground-level enhancement events: they had speeds of >2000 km s1 and all were full-halo CMEs. Many SEP events did not have detectable flux at Earth in the >300 MeV energy channels, presumably because of poor magnetic connectivity.
Document ID
20190001459
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Gopalswamy, Nat
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Maekelae, Pertti
(Catholic Univ. of America Washington, DC, United States)
Yashiro, Seiji
(Catholic Univ. of America Washington, DC, United States)
Lara, Alejandro
(Catholic Univ. of America Washington, DC, United States)
Xie, Hong
(Catholic Univ. of America Washington, DC, United States)
Akiyama, Sachiko
(Catholic Univ. of America Washington, DC, United States)
MacDowall, Robert J.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Date Acquired
March 12, 2019
Publication Date
November 20, 2018
Publication Information
Publication: Astrophysical Journal Letters
Publisher: American Astronomical Society
Volume: 868
Issue: 2
ISSN: 2041-8205
e-ISSN: 2041-8213
Subject Category
Solar Physics
Report/Patent Number
GSFC-E-DAA-TN66058
ISSN: 2041-8205
Report Number: GSFC-E-DAA-TN66058
E-ISSN: 2041-8213
Funding Number(s)
CONTRACT_GRANT: NNG11PL10A
Distribution Limits
Public
Copyright
Other

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