Decayless kink oscillations in coronal loops maintain stable amplitudes despite nearby solar flares of various classes.
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2 Pith papers cite this work. Polarity classification is still indexing.
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astro-ph.SR 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
Simulations indicate photospheric vortices produce higher chromospheric temperatures and stronger supersonic upflows than non-vortex regions, without shifting shock formation heights.
citing papers explorer
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Effect of Solar Flares on Decayless Kink Oscillations in Nearby Coronal Loops
Decayless kink oscillations in coronal loops maintain stable amplitudes despite nearby solar flares of various classes.
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Solar Vortices: Catalysts of Magnetoacoustic Wave Dissipation and Atmospheric Heating
Simulations indicate photospheric vortices produce higher chromospheric temperatures and stronger supersonic upflows than non-vortex regions, without shifting shock formation heights.