Self-pressed radiating theta discharge with trapped magnetic flux

V. Burtsev, N. Kalinin
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Abstract

Numerical simulation of a radiating theta discharge pressed to the inner wall of a cylindrical dielectric chamber under the pressure of a trapped longitudinal magnetic field has been carried out in a high-pressure gas. The longitudinal magnetic field is created by a solenoid, which acts as inductive energy storage; an electro-explosive current breaker is used as an opening switch for this energy storage. It is shown that discharges of this type allow radial converging radiation fluxes of different spectral structures to be formed and the luminance temperature on the axis to vary in the range of several electronvolts.
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带捕获磁通的自压辐射放电
本文对高压气体中圆柱形介质腔内壁在俘获纵向磁场压力下的辐射放电进行了数值模拟。纵向磁场由螺线管产生,充当感应储能;该储能装置采用电爆电流断路器作为开路开关。结果表明,这种类型的放电可以形成不同光谱结构的径向会聚辐射通量,并且轴上的发光温度在几个电子伏特的范围内变化。
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Plasma Devices and Operations
Plasma Devices and Operations 物理-核科学技术
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