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Working Group 4 Report: Composition and Elemental Abundance Variations in the Solar Atmosphere and Solar Wind

机译:第四工作组报告:太阳大气和太阳风的组成和元素丰度变化

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摘要

This paper contains a summary of the topics treated in the working group on abundance variations in the solar atmosphere and in the solar wind. The FIP bias (overabundance of particles with low First Ionization Potentials over photospheric abundances) in coronal holes and coronal hole associated solar wind amounts to values between 1 and 2. The FIP bias in the slow solar wind is typically a factor 4, consistent with optical observations in streamers. In order to distinguish between different theoretical models which make an attempt to explain the FIP bias, some observable parameters must be provided. Unfortunately, many models are deficient in this respect. In addition to FIP fractionation, gravitational settling of heavy elements has been found in the core of long lived streamers. The so-called electron 'freeze in' temperatures derived from in situ observed ionization states of minor ions in the fast wind are significantly higher than the electron temperatures derived from diagnostic line ratios observed in polar coronal holes. The distinction between conditions in plumes and interplume lanes needs to be further investigated. The 'freeze in' temperatures for the slow solar wind are consistent with the electron temperatures derived for streamers.
机译:本文总结了工作组中有关太阳大气和太阳风的丰度变化的主题。日冕孔和与日冕孔相关的太阳风中的FIP偏差(具有较低的第一电离能的粒子的丰度)在值和1-2之间。慢速太阳风中的FIP偏差通常是系数4,与光学一致彩带中的观测结果。为了区分试图解释FIP偏差的不同理论模型,必须提供一些可观察到的参数。不幸的是,许多模型在这方面是不足的。除FIP分馏外,在长寿命拖缆的核心中还发现了重元素的重力沉降。从快风中原位观察到的次要离子的电离状态得出的所谓电子“冻结”温度明显高于在极冠状孔中观察到的诊断线比得出的电子温度。羽状通道和插线通道之间的条件之间的区别有待进一步研究。缓慢的太阳风的“冻结”温度与流光得出的电子温度一致。

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