Spatially Resolved Oscillations of a Flare Looptop X-Ray Source

Bibliographic Details
Title: Spatially Resolved Oscillations of a Flare Looptop X-Ray Source
Authors: Fanpeng Shi, Alexander Warmuth, Dong Li, Qingmin Zhang, Zongjun Ning, Stefan Purkhart, Song Tan, Frédéric Schuller, Jake A. J. Mitchell
Source: The Astrophysical Journal Letters, Vol 982, Iss 1, p L6 (2025)
Publisher Information: IOP Publishing, 2025.
Publication Year: 2025
Collection: LCC:Astrophysics
Subject Terms: Solar flares, Solar oscillations, Solar x-ray emission, Solar ultraviolet emission, Astrophysics, QB460-466
More Details: The looptop region in solar flares is a crucial site to understand the physical processes of magnetic reconnection and particle acceleration. Here, we report novel details of a flare looptop X-ray source that is associated with electron acceleration. The looptop source exhibits an oscillation in height that is statistically anticorrelated with the X-ray intensity, in which the variation in intensity slightly precedes the height. Two oscillation periods are found, i.e., a period of ∼2 minutes with a large amplitude and a relatively weak period of ∼1 minute. The nonthermal electron spectral index and flux deduced from X-ray spectra, and the intensity of flare ribbons/footpoints seen in EUV/UV images all show similar oscillations. In addition, the repeated downward contracting loops/plasmoids from the reconnection current sheet are observed. These observations strongly support a physical scenario where repeated reconnection outflows impinge on the flare looptop, while concurrently accelerated electrons are also quasiperiodically injected into it. These energy inputs (bulk flow and electron beams) subsequently produce oscillations in the looptop X-ray source, and cause brightness fluctuations in the flare ribbons/footpoints in the lower atmosphere.
Document Type: article
File Description: electronic resource
Language: English
ISSN: 2041-8213
2041-8205
Relation: https://doaj.org/toc/2041-8205
DOI: 10.3847/2041-8213/adb9e0
Access URL: https://doaj.org/article/e5cc122054da4107b0f0e692e8b2e45d
Accession Number: edsdoj.5cc122054da4107b0f0e692e8b2e45d
Database: Directory of Open Access Journals
More Details
ISSN:20418213
20418205
DOI:10.3847/2041-8213/adb9e0
Published in:The Astrophysical Journal Letters
Language:English