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首页> 外文期刊>Solar Physics >The Radial Variation of Interplanetary Shocks in the Inner Heliosphere: Observations by Helios, MESSENGER, and STEREO
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The Radial Variation of Interplanetary Shocks in the Inner Heliosphere: Observations by Helios, MESSENGER, and STEREO

机译:日内圈行星际冲击的径向变化:Helios,MESSENGER和STEREO的观测

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The two major sources of collisionless shocks in the solar wind are interplanetary coronal mass ejections (ICMEs) and stream interaction regions (SIRs). Previous studies show that some SIR-associated shocks form between Venus and Earth while most form beyond 1 AU. Here we examine the high-resolution magnetometer records from Helios 1 and 2 obtained between 0.28 and 1 AU and from MESSENGER obtained between 0.3 and 0.7 AU to further refine our understanding as to where, and in what context, shocks are formed in the inner solar system. From Helios data (Helios 1 from 1974 to 1981 and Helios 2 from 1976 to 1980), we find there were only a few shocks observed inside the orbit of Venus with the closest shock to the Sun at 0.29 AU. We find that there is a strong correlation between shock occurrence and solar activity as measured by the sunspot number. Most of the shocks inside of the orbit of Venus appear to be associated with ICMEs. Even the ICME-associated shocks are quite weak inside the orbit of Venus. By comparing MESSENGER and STEREO results, from 2007 to 2009, we find that in the deep solar minimum, SIR-driven shocks began to form at about 0.4 AU and increased in number with heliocentric distance.
机译:太阳风中无碰撞冲击的两个主要来源是行星际冠状物质抛射(ICME)和流相互作用区域(SIR)。先前的研究表明,一些与SIR相关的震荡在金星和地球之间形成,而大多数震荡超过1 AU。在这里,我们研究了从Helios 1和2获得的0.28和1 AU之间以及从MESSENGER获得的高分辨率的磁力计记录,在0.3和0.7 AU之间获得了信息,以进一步完善我们对内部太阳能在何处以及在什么情况下形成冲击的理解系统。根据Helios的数据(1974年至1981年的Helios 1和1976年至1980年的Helios 2),我们发现在金星轨道内部仅观察到了一些震动,最接近太阳的震动为0.29 AU。我们发现,通过太阳黑子数来衡量,激波的发生与太阳活动之间具有很强的相关性。金星轨道内部的大多数震动似乎都与ICME有关。甚至在金星轨道内部,与ICME相关的冲击也相当微弱。通过比较MESSENGER和STEREO的结果,从2007年到2009年,我们发现在最低太阳深度时,SIR驱动的冲击在0.4 AU左右开始形成,并随着日心距的增加而增加。

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