论文标题
在ICME-HSS相互作用期间血浆的独特多蚀行为
Distinct polytropic behavior of plasma during ICME-HSS Interaction
论文作者
论文摘要
星际冠状动脉质量弹出(ICME)和高速流(HSSS)是星际间空间干扰的驱动因素。它们之间的相互作用会引起多种现象,例如;但是,在ICME-HSS相互作用期间,热力学特性的产生,增强的地理效应,颗粒加速度等。但是,热力学特性如何变化。在这项研究中,我们研究了立体声和风飞船观察到的ICME-HSS相互作用期间等离子体的多面性行为。我们发现,立体声A观察到的ICME具有多极体指数$α= 1.0 $,即表现出等温过程。此外,风线航天器观察到HSS区域,非相互作用ICME和ICME-HSS相互作用区域。在每个区域中,我们发现$α$ = 1.8,$α$ = 0.7和$α$ = 2.5。这意味着HSS区域表现出几乎绝热的行为,ICME区域紧密等温度,ICME-HSS相互作用区域表现出超绝热行为。由于与HSS相互作用,ICME的扩展不足触发了取决于血浆组分自由度的加热和冷却机制的系统。
Interplanetary Coronal Mass Ejections (ICMEs) and High Speed Streams (HSSs) are noteworthy drivers of disturbance of interplanetary space. Interaction between them can cause several phenomena, such as; generation of waves, enhanced geo-effectiveness, particle acceleration, etc. However, how does thermodynamic properties vary during the ICME-HSS interaction remain an open problem. In this study, we investigated the polytropic behavior of plasma during an ICME-HSS interaction observed by STEREO and Wind spacecraft. We find that the ICME observed by the STEREO-A has polytropic index $α= 1.0$, i.e., exhibiting isothermal process. Moreover, Wind spacecraft observed the HSS region, non-interacting ICME, and ICME-HSS interaction region. During each regions we found $α$=1.8, $α$=0.7, and $α$=2.5, respectively. It implies that the HSS region exhibits a nearly adiabatic behaviour, ICME region is closely isothermal, and the ICME-HSS interaction region exhibits super-adiabatic behaviour. The insufficient expansion of the ICME due to the interaction with HSS triggers the system for heating and cooling mechanisms which dependent on the degrees of freedom of plasma components.