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  Effect of Transport Coefficients on Excitation of Flare-induced Standing Slow-mode Waves in Coronal Loops

Wang, T., Ofman, L., Sun, X., Solanki, S. K., & Davila, J. M. (2018). Effect of Transport Coefficients on Excitation of Flare-induced Standing Slow-mode Waves in Coronal Loops. The Astrophysical Journal, 860(2):. doi:10.3847/1538-4357/aac38a.

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アイテムのパーマリンク: https://hdl.handle.net/21.11116/0000-0003-C39D-0 版のパーマリンク: https://hdl.handle.net/21.11116/0000-0003-C39E-F
資料種別: 学術論文

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 作成者:
Wang, Tongjiang, 著者
Ofman, Leon, 著者
Sun, Xudong, 著者
Solanki, Sami K.1, 著者           
Davila, Joseph M., 著者
所属:
1Department Sun and Heliosphere, Max Planck Institute for Solar System Research, Max Planck Society, ou_1832289              

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キーワード: Sun: corona; Sun: UV radiation; Sun: flares; Sun: oscillations; waves
 要旨: Standing slow-mode waves have been recently observed in flaring loops by the Atmospheric Imaging Assembly of the Solar Dynamics Observatory. By means of the coronal seismology technique, transport coefficients in hot (~10 MK) plasma were determined by Wang et al., revealing that thermal conductivity is nearly suppressed and compressive viscosity is enhanced by more than an order of magnitude. In this study, we use 1D nonlinear MHD simulations to validate the predicted results from the linear theory and investigate the standing slow-mode wave excitation mechanism. We first explore the wave trigger based on the magnetic field extrapolation and flare emission features. Using a flow pulse driven at one footpoint, we simulate the wave excitation in two types of loop models: Model 1 with the classical transport coefficients and Model 2 with the seismology-determined transport coefficients. We find that Model 2 can form the standing wave pattern (within about one period) from initial propagating disturbances much faster than Model 1, in better agreement with the observations. Simulations of the harmonic waves and the Fourier decomposition analysis show that the scaling law between damping time (τ) and wave period (P) follows τ ∝ P 2 in Model 2, while τ ∝ P in Model 1. This indicates that the largely enhanced viscosity efficiently increases the dissipation of higher harmonic components, favoring the quick formation of the fundamental standing mode. Our study suggests that observational constraints on the transport coefficients are important in understanding both the wave excitation and damping mechanisms.

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言語: eng - English
 日付: 2018
 出版の状態: 出版
 ページ: -
 出版情報: -
 目次: -
 査読: 査読あり
 識別子(DOI, ISBNなど): DOI: 10.3847/1538-4357/aac38a
 学位: -

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出版物 1

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出版物名: The Astrophysical Journal
種別: 学術雑誌
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所属:
出版社, 出版地: Bristol; Vienna : IOP Publishing; IAEA
ページ: - 巻号: 860 (2) 通巻号: 107 開始・終了ページ: - 識別子(ISBN, ISSN, DOIなど): ISSN: 0004-637X
CoNE: https://pure.mpg.de/cone/journals/resource/954922828215_3