Variations in the Solar Wind Velocity of the Daily Range (Microstreams) in the Near-Earth Space and Remote Areas of the Heliosphere

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS
D. V. Erofeev
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Abstract

The article studies microstreams, increases in solar wind (SW) currents up to several tens of km/s, with a time scale of the order of a day. A comparative analysis of microstreams present in the polar and low-latitude SW at different heliocentric distances has been carried out. The comparison showed that the properties of microstreams in the near-Earth fast SW are qualitatively similar to the properties of microstreams present in the polar SW during periods close to solar activity minima, at heliocentric distances from 2 to 4.5 AU. At the same time, the quantitative parameters of microstreams (amplitudes of variations in radial and tangential velocity, as well as relative variations in temperature, density, and plasma pressure) show a monotonic decrease with increasing heliocentric distance, which can be interpreted as a consequence of the gradual evolution of microstreams with distance from the Sun. However, comparison with SW measurements in the low-latitude region of the heliosphere at distances of about 5 AU shows some significant differences, which indicate a more rapid evolution of microstreams in the inhomogeneous low-latitude SW.

Abstract Image

近地空间和遥远日球层太阳风日范围(微流)的变化
本文研究了太阳风(SW)流的微流,增加到几十公里/秒,时间尺度为一天。对不同日心距离下西南极区和低纬度区微流进行了对比分析。对比结果表明,在接近太阳活动极小期(日心距离为2 ~ 4.5 AU),近地快速西南偏南的微流性质与极地西南偏南的微流性质在质量上相似。同时,微流的定量参数(径向速度和切向速度的变化幅度以及温度、密度和等离子体压力的相对变化幅度)随日心距离的增加而单调下降,这可以解释为微流随离太阳距离的增加而逐渐演变的结果。然而,与日球层低纬度区域的西南偏南观测结果相比,在5 AU左右的距离上显示出一些显著的差异,这表明在不均匀的低纬度西南偏南中,微流的演化更为迅速。
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来源期刊
Geomagnetism and Aeronomy
Geomagnetism and Aeronomy Earth and Planetary Sciences-Space and Planetary Science
CiteScore
1.30
自引率
33.30%
发文量
65
审稿时长
4-8 weeks
期刊介绍: Geomagnetism and Aeronomy is a bimonthly periodical that covers the fields of interplanetary space; geoeffective solar events; the magnetosphere; the ionosphere; the upper and middle atmosphere; the action of solar variability and activity on atmospheric parameters and climate; the main magnetic field and its secular variations, excursion, and inversion; and other related topics.
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