Quasi-periodic pulsations in extreme-ultraviolet brightenings

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Lim, Daye, Van Doorsselaere, Tom, Berghmans, David, Hayes, Laura A., Verbeeck, Cis, Narang, Nancy, Dominique, Marie, Inglis, Andrew R.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915307032936448
author Lim, Daye
Van Doorsselaere, Tom
Berghmans, David
Hayes, Laura A.
Verbeeck, Cis
Narang, Nancy
Dominique, Marie
Inglis, Andrew R.
author_facet Lim, Daye
Van Doorsselaere, Tom
Berghmans, David
Hayes, Laura A.
Verbeeck, Cis
Narang, Nancy
Dominique, Marie
Inglis, Andrew R.
contents Context. Extreme-ultraviolet (EUV) observations have revealed small-scale transient brightenings that may share common physical mechanisms with larger-scale solar flares. A notable feature of solar and stellar flares is the presence of quasi-periodic pulsations (QPPs), which are considered a common and potentially intrinsic characteristic. Aims. We investigate the properties of QPPs detected in EUV brightenings, which are considered small-scale flares, and compare their statistical properties with those observed in solar and stellar flares. Methods. We extracted integrated light curves of 22,623 EUV brightenings in two quiet Sun regions observed by the Solar Orbiter/Extreme Ultraviolet Imager and identified QPPs in their light curves using Fourier analysis. Results. Approximately 2.7 % of the EUV brightenings exhibited stationary QPPs. The QPP occurrence rate increased with the surface area, lifetime, and peak brightness of the EUV brightenings. The detected QPP periods ranged from approximately 15 to 260 seconds, which is comparable to the periods observed in solar and stellar flares. Consistent with observations of QPPs in solar and stellar flares, no correlation was found between the QPP period and peak brightness. However, unlike the trend observed in solar flares, no correlation was found between the QPP period and lifetime/length scale. Conclusions. The presence of QPPs in EUV brightenings supports the interpretation that these events may be small-scale manifestations of flares, and the absence of period scaling with loop length further suggests that standing waves may not be the primary driver of QPPs in these events.
format Preprint
id arxiv_https___arxiv_org_abs_2504_15379
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quasi-periodic pulsations in extreme-ultraviolet brightenings
Lim, Daye
Van Doorsselaere, Tom
Berghmans, David
Hayes, Laura A.
Verbeeck, Cis
Narang, Nancy
Dominique, Marie
Inglis, Andrew R.
Solar and Stellar Astrophysics
Context. Extreme-ultraviolet (EUV) observations have revealed small-scale transient brightenings that may share common physical mechanisms with larger-scale solar flares. A notable feature of solar and stellar flares is the presence of quasi-periodic pulsations (QPPs), which are considered a common and potentially intrinsic characteristic. Aims. We investigate the properties of QPPs detected in EUV brightenings, which are considered small-scale flares, and compare their statistical properties with those observed in solar and stellar flares. Methods. We extracted integrated light curves of 22,623 EUV brightenings in two quiet Sun regions observed by the Solar Orbiter/Extreme Ultraviolet Imager and identified QPPs in their light curves using Fourier analysis. Results. Approximately 2.7 % of the EUV brightenings exhibited stationary QPPs. The QPP occurrence rate increased with the surface area, lifetime, and peak brightness of the EUV brightenings. The detected QPP periods ranged from approximately 15 to 260 seconds, which is comparable to the periods observed in solar and stellar flares. Consistent with observations of QPPs in solar and stellar flares, no correlation was found between the QPP period and peak brightness. However, unlike the trend observed in solar flares, no correlation was found between the QPP period and lifetime/length scale. Conclusions. The presence of QPPs in EUV brightenings supports the interpretation that these events may be small-scale manifestations of flares, and the absence of period scaling with loop length further suggests that standing waves may not be the primary driver of QPPs in these events.
title Quasi-periodic pulsations in extreme-ultraviolet brightenings
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2504.15379