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Ion acceleration mechanism in plasma focus devices

机译:等离子体聚焦装置中的离子加速机制

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Plasma focus is one type of ion source with energy up to few MeV. While some efforts have been made to understand the physics of ion beam acceleration in plasma focus devices (PFD), an acceptable clarification does not exist yet. In this work, the procedure of ions) electrons) acceleration in PFDs to the MeV energy is investigated theoretically. Moreover, the trajectory of electrons (ions) and their angular distribution are studied. The simulations are carried out by COMSOL Multiphysics version 5.2 for a 4.5 kJ Mather type PFD. The results of simulations and calculations show that trapped ions in the negative potential of electrons, their movement toward the top of the anode and the drift motion due to electrical and magnetic fields near the top of the anode are the main causes of high energy electrons (ions) production and acceleration.
机译:等离子焦点是一种能量高达少于兆的离子源。 虽然已经努力了解等离子体聚焦装置(PFD)中的离子束加速度的物理学,但尚不存在可接受的澄清。 在这项工作中,在理论上研究了PFD中的PFDS中的离子)加速度。 此外,研究了电子(离子)的轨迹及其角度分布。 模拟由COMSOL Multiphysics 5.2用于4.5 kJ Mather型PFD。 仿真和计算结果表明,在电子和磁场附近阳极顶部附近的阳极顶部的捕获离子,它们朝向阳极顶部的运动是高能量电子的主要原因( 离子)生产和加速度。

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