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Observations of an interplanetary switch-on shock driven by a magnetic cloud

机译:磁云驱动的行星际启动冲击的观测

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A possible interplanetary switch-on shock event prior to a trailing magnetic cloud was observed on August 1, 2002 at 1 AU. We fit the data with the Rankine-Hugoniot (R-H) relations based on both oblique and switch-on shock models. It is found that both models are consistent with the observed data, and the best fit solutions of the two models are close to one another. For the oblique shock model, the best fit upstream shock normal angle, θ_(BN1) (= cos~(-1)(B_(t1)/ B_1)), is as small as 5.55°. The shock has the following characteristics: (1) plasma density, plasma temperature, and the magnetic field strength all increase across the shock, (2) protons are thermalized very efficiently across the shock, but it is not the case for electrons, (3) the fast-mode Mach number is greater than unity in the preshock region and less than unity in the postshock region, and (4) from the oblique shock model we find that the normal Alfvén Mach number is very close to unity in the postshock region, while from the switch-on shock model we obtain a solution of unity normal Alfvén Mach number. Our results clearly demonstrate the MHD character of a fast shock propagating along the ambient magnetic field.
机译:在2002年8月1日的1 AU上观测到在拖曳的磁云之前可能发生的行星际开启冲击事件。我们基于倾斜和接通冲击模型将数据与Rankine-Hugoniot(R-H)关系拟合。发现这两个模型与观测数据一致,并且两个模型的最佳拟合解彼此接近。对于斜向冲击模型,最佳拟合上游冲击法向角θ_(BN1)(= cos〜(-1)(B_(t1)/ B_1))小至5.55°。冲击具有以下特征:(1)整个冲击过程中,等离子体密度,等离子体温度和磁场强度都会增加;(2)整个冲击过程中,质子会非常有效地热化,但电子情况并非如此(3 )快速模式马赫数在震前区域大于一,在震后区域小于一,(4)从斜激模型中我们发现,正常Alfvén马赫数在震后区域中非常接近于一,而从接通冲击模型中,我们获得了统一的标准Alfvén马赫数的解。我们的结果清楚地证明了沿环境磁场传播的快速冲击的MHD特征。

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