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Anchor Point of Electron Acceleration around Dipolarization Fronts in Space Plasmas

机译:锚点电子加速度在太空等离子体中的双极化前沿

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摘要

An anchor point, which is an energy threshold above which electrons are accelerated and below which electrons are decelerated, has recently been reported within the dipolarizing flux bundles behind dipolarization fronts (DFs) both in observations and simulations. However, what determines this point and how it is formed remain unclear. In this study, we investigate for the first time the formation of this point and the relation between this point and the plasma properties by considering a large amount of DF events measured by Cluster. We find a good correlation between this anchor point and the plasma-sheet density and temperature. We notice that such a point appears primarily in the DF events associated with strong whistlers, suggesting that it is formed due to wave-particle interactions near DFs. Quantitatively, we establish a model for the anchor point, E_(AP) = 10~(2.2±0.3)×(N/T)~(-0.6±0.1) eV, where N and T are the normalized plasma-sheet density and temperature, respectively. With this model, we can predict the electron acceleration features behind DFs, by monitoring plasma properties in the plasma sheet. Such a model can be crucial for understanding electron acceleration regions elsewhere in space, such as reconnection diffusion region and collisionless shocks.
机译:锚点是高于上述电子被加速的能量阈值,并且在观察和模拟中的双极化磁通束(DFS)后面的双极化磁通束内近端被报道了电子的能量阈值。但是,确定该点以及如何形成仍然不清楚。在这项研究中,我们通过考虑通过簇测量的大量DF事件来研究这一点的第一次形成这一点和血浆属性之间的关系。我们在该锚点和等离子体纸张密度和温度之间找到了良好的相关性。我们注意到,这种点主要出现在与强哨者相关的DF事件中,表明它是由于DFS附近的波粒子相互作用而形成。定量地,我们建立了锚点的模型,E_(AP)= 10〜(2.2±0.3)×(N / T)〜(-0.6±0.1)EV,其中N和T是归一化的等离子体纸张密度和温度分别。利用该模型,我们可以通过监测等离子体片中的等离子体特性来预测DFS后面的电子加速度特征。这种模型对于理解空间的其他地方的电子加速度区域,例如重新连接扩散区域和碰撞冲击是至关重要的。

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