Comparison of Damping Mechanisms for Transverse Waves in Solar Coronal Loops

被引:10
作者
Montes-Solis, Maria [1 ,2 ]
Arregui, Inigo [1 ,2 ]
机构
[1] Inst Astrofis Canarias, E-38205 Tenerife, Spain
[2] Univ La Laguna, Dept Astrofis, E-38206 Tenerife, Spain
关键词
magnetohydrodynamics (MHD); methods: statistical; Sun: corona; Sun: oscillations; waves; MAGNETIC-FLUX TUBES; ALFVEN WAVES; RESONANT ABSORPTION; BAYESIAN-INFERENCE; TRANSITION-REGION; KINK OSCILLATIONS; LEAKY; EXPLORER; TRACE; TIME;
D O I
10.3847/1538-4357/aa84b7
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present a method to assess the plausibility of alternative mechanisms to explain the damping of magnetohydrodynamic transverse waves in solar coronal loops. The considered mechanisms are resonant absorption of kink waves in the Alfven continuum, phase mixing of Alfven waves, and wave leakage. Our methods make use of Bayesian inference and model comparison techniques. We first infer the values for the physical parameters that control the wave damping, under the assumption of a particular mechanism, for typically observed damping timescales. Then, the computation of marginal likelihoods and Bayes factors enable us to quantify the relative plausibility between the alternative mechanisms. We find that, in general, the evidence is not large enough to support a single particular damping mechanism as the most plausible one. Resonant absorption and wave leakage offer the most probable explanations in strong damping regimes, while phase mixing is the best candidate for weak/moderate damping. When applied to a selection of 89 observed transverse loop oscillations, with their corresponding measurements of damping timescales and taking into account data uncertainties, we find that positive evidence for a given damping mechanism is only available in a few cases.
引用
收藏
页数:12
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共 50 条
[11]  
Aschwanden M. J., 2005, Physics of the Solar Corona. An Introduction with Problems and Solutions, V2nd ed.
[12]   Coronal loop oscillations observed with the Transition region and Coronal explorer [J].
Aschwanden, MJ ;
Fletcher, L ;
Schrijver, CJ ;
Alexander, D .
ASTROPHYSICAL JOURNAL, 1999, 520 (02) :880-894
[13]   Coronal loop physical parameters from the analysis of multiple observed transverse oscillations [J].
Asensio Ramos, A. ;
Arregui, I. .
ASTRONOMY & ASTROPHYSICS, 2013, 554
[14]  
Bayes T. LII, 1763, M F R S PHILOS T, V53, P370, DOI [10.1098/rstl.1763.0053, DOI 10.1098/RSTL.1763.0053]
[15]   CORONAL LOOP OSCILLATIONS DRIVEN BY FOOTPOINT MOTIONS - ANALYTICAL RESULTS FOR A MODEL PROBLEM [J].
BERGHMANS, D ;
DEBRUYNE, P .
ASTROPHYSICAL JOURNAL, 1995, 453 (01) :495-504
[16]   Coronal leaky tube waves and oscillations observed with trace [J].
Cally, PS .
SOLAR PHYSICS, 2003, 217 (01) :95-108
[17]   LEAKY AND NON-LEAKY OSCILLATIONS IN MAGNETIC-FLUX TUBES [J].
CALLY, PS .
SOLAR PHYSICS, 1986, 103 (02) :277-298
[18]  
Casella G., 2004, MONTE CARLO STAT MET, P79
[19]   Chromospheric damping of Alfven waves [J].
De Pontieu, B ;
Martens, PCH ;
Hudson, HS .
ASTROPHYSICAL JOURNAL, 2001, 558 (02) :859-871
[20]   emcee: The MCMC Hammer [J].
Foreman-Mackey, Daniel ;
Hogg, David W. ;
Lang, Dustin ;
Goodman, Jonathan .
PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF THE PACIFIC, 2013, 125 (925) :306-312