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Laboratory simulation of low-energy electron beam injection by a Japanese sounding rocket in space

机译:日本探测火箭在太空中低能电子束注入的实验室模拟

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Wave-particle interactions produced by a low-energy electron beam injected into the ionosphere are experimentally examined in a space simulation plasma chamber. The energy range of the beam is from thermal (∼0.1 eV) to 4 eV. An electrostatic VLF wave with a monochromatic frequency well below the LHR frequency is excited. The beam-excited wave propagates almost perpendicular to the beam flow direction. The phase velocity of the excited wave is much slower than the ion sound speed in the background plasma. A standing wave is observed within a hollow region surrounded by a conic beam in the direction perpendicular to the conic axis, but the wave inside the hollow cone is found to propagate along the conic axis. The frequency changes of the emissions observed in the previous rocket experiment are successfully reproduced when the beam injection angle from the magnetic field is changed.
机译:在空间模拟等离子体室中,对注入到电离层中的低能电子束产生的波粒相互作用进行了实验研究。光束的能量范围是从热(〜0.1 eV)到4 eV。激发单色频率远低于LHR频率的静电VLF波。光束激发波几乎垂直于光束流动方向传播。激发波的相速度比背景等离子体中的离子声速慢得多。在垂直于圆锥轴的方向上,在由圆锥形光束围绕的空心区域内观察到驻波,但是发现空心圆锥体内的波沿圆锥轴传播。当改变来自磁场的射束角度时,可以成功地再现在先前的火箭实验中观察到的发射的频率变化。

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