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Dependence of magnetopause erosion on southward interplanetary magnetic field

机译:磁层顶侵蚀对南向行星际磁场的依赖性

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On May 4, 1998, the Wind and ACE satellites observed a period of extremely strong southward interplanetary magnetic field (IMF) followed by a period of highly variable IMF. The magnetopause moved inside the geosynchronous orbit, exposing Los Alamos National Laboratory (LANL) geosynchronous satellites and Polar to the magnetosheath. In a simple model the magnetopause erosion may be linearly proportional to the magnitude of southward IMF. A careful comparison of the predictions derived from various magnetopause location models to the in situ observations indicates a nonlinear dependence of the magnetopause erosion on IMF B-z. The observations from the Wind and ACE satellites are significantly different in the period of highly variable IMF. The predictions based on the ACE solar wind data are more consistent with the LANL observations than those based on the Wind solar wind data. The positions of the satellites show that ACE and LANL were mainly on the same side of the Sun-Earth meridian plane. However, for the Polar observations the predictions based on the Wind data are better than those based on the ACE data. Wind and Polar were on the same side of the equatorial plane. These results suggest that we choose a solar wind monitor that is on the same side of the meridian or equatorial plane as the magnetospheric. satellite for better predictions. [References: 20]
机译:1998年5月4日,Wind和ACE卫星观测到一段时间,期间南极行星际磁场(IMF)非常强,随后是IMF高度变化时期。磁层顶在地球同步轨道内移动,使洛斯阿拉莫斯国家实验室(LANL)地球同步卫星和极地暴露于磁石。在一个简单的模型中,更年期侵蚀可能与IMF向南的大小成线性比例关系。仔细地比较了从各种磁更年期位置模型得出的预测与原位观测值,可以发现磁年更年期侵蚀对IMF B-z的非线性依赖性。在高度可变的IMF时期,来自Wind和ACE卫星的观测结果存在显着差异。与基于Wind太阳风数据的预测相比,基于ACE太阳风数据的预测与LANL观测更加一致。卫星的位置表明ACE和LANL主要位于日地子午线的同一侧。但是,对于Polar观测,基于Wind数据的预测要比基于ACE数据的预测更好。风和极地位于赤道平面的同一侧。这些结果表明,我们选择的太阳风监测器与磁层在子午线或赤道面的同一侧。卫星以获得更好的预测。 [参考:20]

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