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Quiet Sun coronal heating: analyzing large scale magnetic structures driven by different small-scale uniform sources

机译:安静的日冕加热:分析由不同小尺度均匀源驱动的大尺度磁性结构

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摘要

Recent measurements of quiet Sun heating events by Krucker and Benz (1998) give strong support to Parker's (1988) hypothesis that small scale dissipative events make the main contribution to the quiet heating. Moreover, combining their observations with the analysis by Priest et al. (2000), it can be concluded that the sources driving these dissipative events are also small scale sources, typically of the order of (or smaller than) 2000 km and the resolution of modern instruments. Thus arises the question of how these small scale events participate into the larger scale observable phenomena, and how the information about small scales can be extracted from observations. This problem is treated in the framework of a simple phenomenological model introduced in Krasnoselskikh et al. (2001), which allows to switch between various small scale sources and dissipative processes. The large scale structure of the magnetic field is studied by means of Singular Value Decomposition (SVD) and a derived entropy, techniques which are readily applicable to experimental data.
机译:Krucker和Benz(1998)对安静的太阳加热事件的最新测量结果为Parker(1988)的假设提供了有力的支持,该假设认为小规模的耗散事件是造成安静的加热的主要因素。此外,将他们的观察结果与Priest等人的分析相结合。 (2000年),可以得出结论,驱动这些耗散事件的源也是小规模的源,通常约为(或小于)2000 km以及现代仪器的分辨率。因此,出现了这样一个问题:这些小规模事件如何参与更大规模的可观测现象,以及如何从观测中提取有关小规模的信息。在Krasnoselskikh等人引入的简单现象学模型的框架内解决了此问题。 (2001年),它允许在各种小规模来源和耗散过程之间切换。利用奇异值分解(SVD)和派生的熵研究了磁场的大规模结构,这些技术很容易应用于实验数据。

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