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Debye-scale solitary structures measured in a beam-plasma laboratory experiment

机译:在束流等离子体实验室实验中测量的德拜规模孤立结构

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Solitary electrostatic pulses have been observed in numerous places of the magnetosphere such as the vicinity of reconnection current sheets, shocks or auroral current systems, and are often thought to be generated by energetic electron beams. We present results of a series of experiments conducted at the UCLA large plasma device (LAPD) where a suprathermal electron beam was injected parallel to a static magnetic field. Micro-probes with tips smaller than a Debye length enabled the detection of solitary pulses with positive electric potential and half-widths 4-25 Debye lengths (λDe), over a set of experiments with various beam energies, plasma densities and magnetic field strengths. The shape, scales and amplitudes of the structures are similar to those observed in space, and consistent with electron holes. The dependance of these properties on the experimental parameters is shown. The velocities of the solitary structures (1-3 background electron thermal velocities) are found to be much lower than the beam velocities, suggesting an excitation mechanism driven by parallel currents associated to the electron beam.
机译:在磁层的许多地方都观察到了孤立的静电脉冲,例如重新连接电流片附近,电击或极光电流系统附近,并且通常被认为是由高能电子束产生的。我们介绍了在UCLA大型等离子体装置(LAPD)上进行的一系列实验的结果,在该装置中,平行于静态磁场注入了超热电子束。在一系列具有各种束能量,等离子密度和磁场强度的实验中,微探针的尖端小于德拜长度,从而能够检测到具有正电势和半宽度为4-25德拜长度(λDe)的孤脉冲。结构的形状,尺度和幅度与在空间中观察到的相似,并且与电子空穴一致。显示了这些性质对实验参数的依赖性。发现孤立结构的速度(1-3个背景电子热速度)远低于电子束速度,这表明激发机制是由与电子束相关的平行电流驱动的。

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