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Accounting for the Edge Effects of Electric and Magnetic Fields in the Spectroscopy of Ion Flows from Relativistic Laser Plasma

机译:从相对论激光等离子体的离子流光谱中的电气和磁场的边缘效应算起

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摘要

Analytical formulas are obtained that describe stationary fields in magnetic and electric separators of charged particles of ion spectrometers of two types taking edge effects into account: a time-of-flight spectrometer with magnetic separation and a Thomson mass spectrometer. Based on a numerical solution of the equation of ion motion in magnetic and electric fields taking the edge effects into account, it is shown that calculation using the effective constant-field method without taking the edge effects into account leads to errors not only in determining the ion energy, but also in the estimation of the mass and charge compositions of the ion flow, which is formed under irradiation of solid targets with femtosecond laser pulses of relativistic intensity. On the basis of the developed approaches, experimental data that were obtained using spectrometers of both types at a laser radiation intensity of above 10(18) W/cm(2) on targets are interpreted and it is shown that the developed algorithms provide their fast and efficient analysis.
机译:获得分析公式,描述了在两种类型的离子光谱仪的带电粒子的磁性和电隔膜中描述了抗边缘效应的磁性分离器的静止场:具有磁性分离和汤姆森质谱仪的飞行时间光谱仪。基于磁场中的离子运动方程的数值解决方案考虑了边缘效应,显示使用有效恒定场方法计算,而不将边缘效应置于帐户,这不仅导致错误而导致错误离子能量,也在估计离子流动的质量和电荷组合物,其在具有相对论强度的飞秒激光脉冲的固体靶的照射下形成。在开发的方法的基础上,解释了在目标上以上10(18)W / cm(2)的激光辐射强度使用两种类型的光谱仪获得的实验数据被解释,并显示了发达的算法提供了快速有效的分析。

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