Barbulescu M, Erdélyi R
1Solar Physics and Space Plasma Research Centre (SP2RC), School of Mathematics and Statistics, University of Sheffield, Hounsfield Road, Hicks Building, Sheffield, S3 7RH UK.
2Department of Astronomy, Eötvös Loránd University, Pázmány P. sétány 1/A, Budapest, 1117 Hungary.
Sol Phys. 2018;293(6):86. doi: 10.1007/s11207-018-1305-6. Epub 2018 May 28.
Recent observations have shown that bulk flow motions in structured solar plasmas, most evidently in coronal mass ejections (CMEs), may lead to the formation of Kelvin-Helmholtz instabilities (KHIs). Analytical models are thus essential in understanding both how the flows affect the propagation of magnetohydrodynamic (MHD) waves, and what the critical flow speed is for the formation of the KHI. We investigate both these aspects in a novel way: in a steady magnetic slab embedded in an asymmetric environment. The exterior of the slab is defined as having different equilibrium values of the background density, pressure, and temperature on either side. A steady flow and constant magnetic field are present in the slab interior. Approximate solutions to the dispersion relation are obtained analytically and classified with respect to mode and speed. General solutions and the KHI thresholds are obtained numerically. It is shown that, generally, both the KHI critical value and the cut-off speeds for magnetoacoustic waves are lowered by the external asymmetry.
最近的观测表明,结构化太阳等离子体中的整体流动运动,最明显的是在日冕物质抛射(CME)中,可能会导致开尔文 - 亥姆霍兹不稳定性(KHI)的形成。因此,分析模型对于理解流动如何影响磁流体动力学(MHD)波的传播以及形成KHI的临界流速至关重要。我们以一种新颖的方式研究这两个方面:在嵌入非对称环境的稳定磁平板中。平板的外部被定义为两侧具有不同的背景密度、压力和温度平衡值。平板内部存在稳定流动和恒定磁场。通过解析得到色散关系的近似解,并根据模式和速度进行分类。通过数值得到一般解和KHI阈值。结果表明,一般来说,外部不对称会降低KHI临界值和磁声波的截止速度。