Damping Scenarios of Kink Oscillations of Solar Coronal Loops

Author:

Nakariakov Valery M.12ORCID,Yelagandula Naga V.3ORCID

Affiliation:

1. Centro de Investigacion en Astronomía, Universidad Bernardo O’Higgins, Avenida Viel 1497, Santiago 8370993, Chile

2. Saint Petersburg Branch, Special Astrophysical Observatory of RAS, 196140 Saint Petersburg, Russia

3. Special Astrophysical Observatory of RAS, 369167 Nizhny Arkhyz, Russia

Abstract

The transition from the large-amplitude rapidly-decaying regime of kink oscillations of plasma loops observed in the corona of the Sun to the low-amplitude decayless oscillations is modelled. In this study, the decayless regime is associated with the energy supply from coronal plasma flows, i.e., self-oscillations, or random movements of footpoints of the oscillating loop. The damping is attributed to the linear effect of resonant absorption. We demonstrate that the decay of an impulsively excited kink oscillation to the self-oscillatory stationary amplitude differs from the exponential decay. The damping time is found to depend on the oscillation amplitude to the power of a negative constant whose magnitude is less than unity. In this scenario, a better model for the damping seems to be super-exponential. In the separately considered case of the decayless oscillatory regime supported by a random driver, the oscillation amplitude experiences an exponential decay to the decayless level. Implications of this finding for magnetohydrodynamic seismology of the solar corona based on the effect of resonant absorption are discussed.

Funder

Ministry of Science and Higher Education

Publisher

MDPI AG

Subject

General Physics and Astronomy

Reference59 articles.

1. Magnetohydrodynamic Waves in the Solar Corona;Nakariakov;Annu. Rev. Astron. Astrophys.,2020

2. Coronal Heating by MHD Waves;Srivastava;Space Sci. Rev.,2020

3. Magnetohydrodynamic Waves in Open Coronal Structures;Banerjee;Space Sci. Rev.,2021

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3. Simultaneous detection of flare-associated kink oscillations and extreme-ultraviolet waves;Science China Technological Sciences;2024-04-22

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