Normal modes of transverse coronal loop oscillations from numerical simulations. I. Method and test case

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dc.contributor.author Rial, S.
dc.contributor.author Arregui, I.
dc.contributor.author Oliver, R.
dc.contributor.author Terradas, J.
dc.date.accessioned 2024-10-11T06:48:49Z
dc.date.available 2024-10-11T06:48:49Z
dc.identifier.uri http://hdl.handle.net/11201/166315
dc.description.abstract <p><em>[eng] The purpose of this work is to develop a procedure to obtain the normal modes of a coronal loop from time-dependent</em></p><p><em>numerical simulations with the aim of better understanding observed transverse loop oscillations. To achieve this goal,</em></p><p><em>in this paper we present a new method and test its performance with a problem for which the normal modes can be</em></p><p><em>computed analytically. In a follow-up paper, the application to the simulations of Rial et al. is tackled. The method</em></p><p><em>proceeds iteratively and at each step consists of (i) a time-dependent numerical simulation followed by (ii) the Complex</em></p><p><em>Empirical Orthogonal Function (CEOF) analysis of the simulation results. The CEOF analysis provides an</em></p><p><em>approximation to the normal mode eigenfunctions that can be used to set up the initial conditions for the numerical</em></p><p><em>simulation of the following iteration, in which an improved normal mode approximation is obtained. The iterative</em></p><p><em>process is stopped once the global difference between successive approximate eigenfunctions is below a prescribed</em></p><p><em>threshold. The equilibrium used in this paper contains material discontinuities that result in one eigenfunction with a</em></p><p><em>jump across these discontinuities and two eigenfunctions whose normal derivatives are discontinuous there. After six</em></p><p><em>iterations, the approximations to the frequency and eigenfunctions are accurate to ~0.7% except for the eigenfunction</em></p><p><em>with discontinuities, which displays a much larger error at these positions.</em></p>
dc.format application/pdf
dc.relation.isformatof Reproducció del document publicat a: https://doi.org/10.3847/1538-4357/ab1417
dc.relation.ispartof 2019, vol. 876, p. 86
dc.rights (c) American Astronomical Society, 2019
dc.subject.classification 52 - Astronomia. Astrofísica. Investigació espacial. Geodèsia
dc.subject.classification 53 - Física
dc.subject.other 52 - Astronomy. Astrophysics. Space research. Geodesy
dc.subject.other 53 - Physics
dc.title Normal modes of transverse coronal loop oscillations from numerical simulations. I. Method and test case
dc.type info:eu-repo/semantics/article
dc.type info:eu-repo/semantics/publishedVersion
dc.date.updated 2024-10-11T06:48:50Z
dc.rights.accessRights info:eu-repo/semantics/openAccess
dc.identifier.doi https://doi.org/10.3847/1538-4357/ab1417


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