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Model of intense pulsed ion beam and simulation study of energy deposited on target

机译:强脉冲离子束模型及靶上沉积能量的仿真研究

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摘要

Gaussian type models have been established according to the real detected voltage of magnetically insulated ion diode and intense pulsed ion beam density near the focus of the diode. The energy deposition of Al target irradiated by intense pulsed ion beam has been simulated by Monte Carlo method based on these models. The results of energy depositions of the irradiation of single energy ions and the Gaussian distribution IPIB have been obtained. Especially cases of ion beam irradiating Al target at different angles on one dimension and two dimensions are discussed. The evolution processes of the energy deposition of ions in target have been simulated during a pulse. In addition, incident angles of H+ ions and C+ ions ranging from 20 to 40 degrees have been researched. We obtained the conclusions that C+ ions of the beam affect the physical properties of near surface region, but H+ ions affect the deeper layer. The energy of intense pulsed ion beam mainly deposits on target surface, so melting and evaporation begin both from target surface. (c) 2006 Elsevier B.V. All fights reserved.
机译:根据磁绝缘离子二极管的实际检测电压和二极管焦点附近的强脉冲离子束密度,建立了高斯模型。在这些模型的基础上,采用蒙特卡罗方法对强脉冲离子束辐照的Al靶材的能量沉积进行了模拟。获得了单个能量离子辐照的能量沉积结果和高斯分布IPIB。特别讨论了离子束在一个维度和两个维度上以不同角度照射Al目标的情况。在脉冲过程中已经模拟了目标中离子能量沉积的演化过程。另外,已经研究了H +离子和C +离子的入射角在20至40度之间。我们得出的结论是,束的C +离子会影响近表面区域的物理特性,而H +离子会影响较深的层。强脉冲离子束的能量主要沉积在目标表面上,因此熔化和蒸发都从目标表面开始。 (c)2006年Elsevier B.V.版权所有。

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