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Cluster observations of kinetic structures and electron acceleration within a dynamic plasma bubble

机译:集群的动力结构和观测在动态等离子体电子加速度泡沫

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Fast plasma flows are believed to play important roles in transporting mass, momentum, and energy in the magnetotail during active periods, such as the magnetospheric substorms. In this paper, we present Cluster observations of a plasma-depleted flux tube, i.e., a plasma bubble associated with fast plasma flow before the onset of a substorm in the near-Earth tail around X = -18 R _E. The bubble is bounded by both sharp leading (?b _z/?x 0) edges. The two edges are thin current layers (approximately ion inertial length) that carry not only intense perpendicular current but also field-aligned current. The leading edge is a dipolarization front (DF) within a slow plasma flow, while the trailing edge is embedded in a super-Alfvénic convective ion jet. The electron jet speed exceeds the ion flow speed thus producing a large tangential current at the trailing edge. The electron drift is primarily given by the E × B drift. Interestingly, the trailing edge moves faster than the leading edge, which causes shrinking of the bubble and local flux pileup inside the bubble. This resulted in a further intensification of B _z, or a secondary dipolarization. Both the leading and trailing edges are tangential discontinuities that confine the electrons inside the bubble. Strong electron acceleration occurred corresponding to the secondary dipolarization, with perpendicular fluxes dominating the field-aligned fluxes. We suggest that betatron acceleration is responsible for the electron energization. Whistler waves and lower hybrid drift waves were identified inside the bubble. Their generation mechanisms and potential roles in electron dynamics are discussed. Key PointsThe bubble is bounded by both leading and trailing edgesThe interaction between leading and trailing edge leads to a secondary DFElectron acceleration occurred at the secondary DF
机译:快速等离子体流被认为扮演了一个重要的角色在运输质量、动量和能量在磁尾活跃时期,如磁层亚暴的。现在集群plasma-depleted的观察磁流管,即等离子体与泡沫快速等离子体流爆发之前亚暴在X = -18 R _E周围的近地尾巴。泡沫都是有界的大幅领先(?< 0)和拖尾(说是/ ?的边缘(大约离子电流的薄层惯性长度),携带不仅强烈当前还field-aligned垂直电流。阵线(DF)在一个缓慢的等离子体流,当后缘是super-Alfvenic嵌入对流离子喷射。超过了离子流速度从而产生很大切向当前的后缘。电子漂移主要是由E×B漂移。速度比前缘,原因萎缩的泡沫和当地通量连环相撞在泡沫。强化B _z或次要的dipolarization。边缘是限制的切向间断内的电子泡沫。加速发生对应二次dipolarization,垂直的通量控制field-aligned通量。表明,电子感应加速器加速负责电子激发。较低的混合漂移波里面被确定的泡沫。潜在的角色在电子动力学进行了讨论。两个前导和尾随edgesThe交互领导和后缘之间导致发生在二级DFElectron加速度二次DF

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