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DYNAMO ACTION IN THERMALLY UNSTABLE INTERSTELLAR FLOWS

机译:热不稳定星际流中的动力作用

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Numerous studies have investigated the role of thermal instability in regulating the phase transition between the cold cloudy and warm diffuse medium of the interstellar medium. Considerable interest has also been devoted to investigating the properties of turbulence in thermally unstable flows, with a special emphasis on molecular clouds and the possibility of star formation. In this study, we investigate another setting in which this instability may be important, namely its effect on dynamo action in interstellar flows. The setup we consider is a three-dimensional periodic cube of gas with an initially weak magnetic field, subject to heating and cooling, the properties of which are such that thermal instability is provoked in a certain temperature regime. Dynamo action is established through external forcing on the flow field. By comparing the results with a cooling function with exactly the same net effect but no thermally unstable regime, we find the following. Reference runs with non-helical forcing were observed to produce no small-scale dynamo action below the Reynolds number 97. Therefore, we expect the magnetic fields generated in the helical runs to be purely due to the action of a large-scale dynamo mechanism. The critical Reynolds number for the onset of the large-scale dynamo was observed to roughly double between the thermally stable versus unstable runs, the conclusion being that the thermal instability makes large-scale dynamo action more difficult. Whereas density and magnetic fields were observed to be almost completely uncorrelated in the thermally stable cases investigated, the action of thermal instability was observed to produce a positive correlation of the form B∝ρ0.2. This correlation is rather weak, and in addition it was observed to break down at the limit of highest densities.
机译:许多研究已经研究了热不稳定性在调节星际介质的冷混浊和暖扩散介质之间的相变中的作用。人们还对研究热不稳定流中的湍流特性投入了极大的兴趣,其中特别着重于分子云和恒星形成的可能性。在这项研究中,我们研究了这种不稳定性可能很重要的另一种情况,即它对星际流中发电机作用的影响。我们考虑的装置是具有初始弱磁场的三维三维周期性立方体,该磁场受到加热和冷却,其特性是在一定温度范围内会引起热不稳定性。通过在流场上施加外力来建立发电机动作。通过将结果与具有完全相同的净效应但没有热不稳定状态的冷却功能进行比较,我们发现以下内容。观察到非螺旋力的参考运行不会产生低于雷诺数97的小规模发电机作用。因此,我们希望在螺旋运行中产生的磁场纯粹是由于大规模发电机机制的作用。观察到在热稳定运行与不稳定运行之间,大型发电机开始的临界雷诺数大约增加了一倍,其结论是,热不稳定性使大型发电机的动作更加困难。尽管在所研究的热稳定情况下观察到密度和磁场几乎完全不相关,但观察到热不稳定性的作用产生形式为B∝ρ0.2的正相关。这种相关性相当弱,此外,还观察到它在最高密度的极限处分解。

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