Transverse Thermal Instability of Radiative Plasma with FLR Corrections for Star Formation in ISM

S. Kaothekar
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引用次数: 1

Abstract

Impact of porosity, rotation and finite ion Larmor radius (FLR) corrections on thermal instability of immeasurable homogeneous plasma has been discovered incorporating the effects of radiative heat-loss function and thermal conductivity. The general dispersion relation is carried out with the help of the normal mode analysis scheme taking the suitable linearized perturbation equations of the difficulty. This general dispersion relations is further reduces for rotation axis parallel and perpendicular to the magnetic field. Thermal instability criterion establishes the stability of the medium. Mathematical calculations have been performed to represent the impact of different limitations on the growth rate of thermal instability. It is found that rotation, FLR corrections and medium porosity stabilize the growth rate of the medium in the transverse mode of propagation. Our outcome of the problem explains that the rotation, porosity and FLR corrections affect the dens molecular clouds arrangement and star configuration in interstellar medium.
辐射等离子体的横向热不稳定性与FLR修正在ISM中的恒星形成
发现了孔隙度、旋转和有限离子拉莫尔半径(FLR)修正对不可测均匀等离子体热不稳定性的影响,并结合了辐射热损失函数和导热系数的影响。采用合适的难度线性化扰动方程,利用正态模态分析格式求解了一般色散关系。对于平行于和垂直于磁场的旋转轴,这种一般色散关系进一步减小。热不稳定性判据建立了介质的稳定性。数学计算表明了不同的限制对热不稳定性增长率的影响。研究发现,旋转、FLR修正和介质孔隙率稳定了介质在横向传播模式下的生长速度。我们的结果解释了旋转、孔隙度和FLR修正对星际介质中星团分子云排列和恒星构型的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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