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Study on Operating Principle of Cockcroft-Walton Circuit to Produce Plasmas Using High-Voltage Discharge

机译:Cockcroft-Walton电路高压放电产生等离子体的工作原理研究

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The basis of the operating principle of Cockcroft-Walton (CW) circuit, which produces a high-voltage, is studied using a simulator of an electrical circuit. The CW circuit experimentally contributed to the breakthrough of nuclear physics for the development of a particle accelerator. High-voltage discharges play an important role not only in producing plasmas but are also applicable in a wide variety of fields. However, studies on the operating principle of CW circuits are not sufficient, though improvement and application of it have been studied. Through our studies, we have found that a part of electrical charge stored in the capacitors remains, the output value of the voltage can be expressed in recurrence formula, and more time is needed for boosting circuits that have higher number of steps. Furthermore, we studied combinations between frequencies of alternating current and capacitance in a capacitor in order to boost effectively.
机译:使用电路仿真器研究了产生高压的Cockcroft-Walton(CW)电路的工作原理。 CW电路在实验上为开发粒子加速器促进了核物理的突破。高压放电不仅在产生等离子体中起着重要的作用,而且还可以应用于广泛的领域。然而,尽管已经研究和改进了连续波电路的工作原理,但对它的工作原理的研究还不够。通过我们的研究,我们发现电容器中保留了一部分电荷,电压的输出值可以用递归公式表示,并且需要更多的时间来增强具有较高阶跃数的电路。此外,我们研究了交流频率和电容器中的电容之间的组合,以有效地进行升压。

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