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首页> 外文期刊>The Astrophysical journal >THE EVOLUTION OF MAGNETIC STRUCTURES DUE TO 'MAGNETOSONIC STREAMING'
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THE EVOLUTION OF MAGNETIC STRUCTURES DUE TO 'MAGNETOSONIC STREAMING'

机译:由于“磁声流干”而引起的磁结构的演变

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The Faraday effect in gasdynamics called acoustic streaming and its accompanying nonlinear phenomena have analogies in plasma magnetohydrodynamics. A natural place where these effects may occur is the solar atmosphere with its strongly inhomogeneous magnetic fields concentrated in random magnetic flux tubes. Unlike acoustic streaming in the usual gasdynamics, nonlinear phenomena consisting in the generation of plasma flows by an oscillating magnetic flux tube, "magnetosonic streaming" (Ryutova 1986), is accompanied by a current drive and results in a specific evolution of magnetic structures: depending on the physical parameters of the medium a single magnetic flux tube may be either split into thinner flux tubes or dissolved diffusively into the ambient plasma. The effect of the "magnetosonic streaming," on one hand, is an obvious candidate for the generation of mass flows at magnetic flux tubes sites, and on the other hand, it plays an essential role in the evolution of magnetic structures and ultimately may determine their lifetime. The theory of magnetosonic streaming is general and can be applied to other astrophysical objects that maintain oscillatory motions and contain structured magnetic fields or magnetic domains. We review analytical results and describe the origin of the magnetosonic streaming in magnetic flux tubes due to their interaction with acoustic waves. We study numerically the regime of the " magnetosonic streaming" corresponding to splitting of a magnetic flux tube. Our computer simulation supports and extends the analytical result.
机译:气体动力学中的法拉第效应称为声流及其伴随的非线性现象,与等离子体磁流体动力学类似。可能发生这些影响的自然场所是太阳大气,其强烈的不均匀磁场集中在随机磁通管中。与通常的气体动力学中的声流不同,非线性现象是由振荡的磁通量管产生等离子体流,即“磁声流”(Ryutova 1986),伴随着电流驱动并导致磁结构的特定演化:根据介质的物理参数,单个磁通管可以分成更细的磁通管,也可以扩散地溶解到周围的等离子体中。一方面,“磁声流”的作用是在磁通量管处产生质量流的明显候选者,另一方面,它在磁结构的演化中起着至关重要的作用,最终可能决定他们的一生。磁声流理论是通用的,可以应用于其他保持振荡运动并包含结构化磁场或磁畴的天体物体。我们回顾分析结果,并描述由于磁通与声波相互作用而在磁通管中产生磁声流的起源。我们从数值上研究了与磁通量管分裂相对应的“磁声流”状态。我们的计算机仿真支持并扩展了分析结果。

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