论文标题

在两种类型的小规模行星际通量范围内的血浆特性和组成的比较分析

Comparative Analyses of Plasma Properties and Composition in Two Types of Small-Scale Interplanetary Flux-ropes

论文作者

Huang, Jin, Liu, Yu, Liu, Jihong, Shen, Yuandeng

论文摘要

小规模的星际磁通量(SIMFRS)以及SIMFRS和磁云(MCS)之间的关系的起源仍然存在争议。在这项研究中,收集了两个SMIFR群体,即源自太阳(Simfr-Sun)的SIMFR,以及来自太阳风(SIMFR-SW)的siFR。我们将SIMFR-SUN(SIMFR-SW)定义为包括(排除)反向流膜外电子的SMIFR,并远离(接近)地球层电流纸。在与无力的通量摩托车模型安装后,从1998年2月至2011年8月观察到的高级构图资源管理器(ACE)观察到了52个SIMFR-SUN和57个SIMFR-SW事件。使用将测量值与其在通量杆中的空间位置联系起来的方法,提出了对SIMFRS两个种群内血浆和组成特征的比较调查。结果表明,这两个SIMFR人群具有明显的差异。与SIMFR-SW相比,SIMFR-SUN类似于MC,具有较低的中央质子密度,更高的VRAD,更高的低纤维元件丰度,更高和更波动的平均离子电荷量和与低校正在加热有关的离子魅力比。此外,对于Simfr-Sun内部的离子电荷态分布,太阳侧高于地球,这可能是由喷发过程中的火炬加热引起的。此外,Simfr-Sun和MCS均表现出血浆Beta和/P趋势之间的抗相关性。这些特征表明SIMFR-SUN和MC很可能具有相同的起源。这项研究支持SIMFR的两源起源,即太阳电晕和太阳风。

The origin of small-scale interplanetary magnetic flux-ropes (SIMFRs) and the relationship between SIMFRs and magnetic clouds (MCs) are still controversial. In this study, two populations of SMIFRs were collected, i.e., SIMFRs originating from the Sun (SIMFR-SUN) and those originating from the solar wind (SIMFR-SW). We defined the SIMFR-SUN (SIMFR-SW) as the SMIFRs that include (exclude) the counter-streaming suprathermal electrons and stay away from (close to) the heliospheric current sheet. After fitting with force-free flux-rope model, 52 SIMFR-SUN and 57 SIMFR-SW events observed by Advanced Composition Explorer (ACE) from 1998 February to 2011 August were qualified. Using the approach of relating the measurements to their spatial position within the flux-ropes, a comparative survey of plasma and composition characteristics inside the two populations of SIMFRs is presented. Results show that the two populations of SIMFRs have apparent differences. Compared with SIMFR-SW, SIMFR-SUN are MC-like, featuring lower central proton density, higher Vrad, higher low-FIP element abundances, higher and more fluctuate average ion charge-states and the ion chargestate ratios which are related to the heating in low corona. In addition, for the ion charge-state distributions inside SIMFR-SUN, the sunward side is higher than earthward, which might be caused by the flare heating during eruption. Moreover, both SIMFR-SUN and MCs show anti-correlation between plasma beta and He/P trend. These characteristics indicate that SIMFR-SUN and MCs are very likely to have the identical origination. This study supports the two-source origin of SIMFRs, i.e., the solar corona and the solar wind.

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