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Cold-Hollow-Cathode Arc Discharge in Crossed Electric and Magnetic Fields

机译:交叉电场和磁场中的冷空心阴极电弧放电

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摘要

A crossed-field cold-hollow-cathode arc is stable at low working gas pressures of 10–2–10–1 Pa, magnetic-field- and gas-dependent arcing voltages of 20–50 V, and discharge currents of 20–200 A. This is because electrons come from a cathode spot produced on the inner cathode surface by a discharge over the dielectric surface. The magnetic field influences the arcing voltage and discharge current most significantly. When the plasma conductivity in the cathode region decreases in the electric field direction, the magnetic field increases, causing the discharge current to decline and the discharge voltage to rise. The discharge is quenched when a critical magnetic field depending on the type of gas is reached. Because of the absence of heated elements, the hollow cathode remains efficient for long when an arc is initiated in both inert and chemically active gases.
机译:跨场冷空心阴极电弧在10–2–10–1 Pa的低工作气体压力,20–50 V的取决于磁场和气体的电弧电压以及20–200的放电电流下稳定A.这是因为电子来自内部阴极表面上的阴极点,该阴极点是通过电介质表面上的放电产生的。磁场对电弧电压和放电电流的影响最大。当阴极区域中的等离子体电导率沿电场方向减小时,磁场增大,从而导致放电电流下降并且放电电压上升。当达到取决于气体类型的临界磁场时,放电被淬灭。由于不存在加热元件,因此在惰性气体和化学活性气体中均产生电弧时,空心阴极可长期保持有效。

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