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Differential algebraic method for aberration analysis of typical electrostatic lenses

机译:微分代数方法对典型静电透镜像差的分析

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In this paper up to fifth-order geometric and third-order chromatic aberration coefficients of typical electrostatic lenses are calculated by means of the charged particle optics code, COSY INFINITY, based on the differential algebraic (DA) method. A two-tube immersion lens and a symmetric einzel lens have been chosen as two examples, whose axial potential distributions are numerically calculated by a FORTRAN program using the finite difference method. The DA results are in good agreement with those evaluated by the aberration integrals in electron optics. The DA method presented here can easily be extended to aberration analysis of other numerically computed electron lenses, including magnetic lenses.
机译:在本文中,基于带电粒子光学代码COZY INFINITY,基于微分代数(DA)方法,可以计算出典型静电透镜的五阶几何和三阶色差系数。已选择两管浸没式透镜和对称einzel透镜作为两个示例,其轴向电势分布是通过使用有限差分法的FORTRAN程序进行数值计算的。 DA结果与电子光学中像差积分评估的结果非常吻合。此处介绍的DA方法可以轻松地扩展到其他数字计算的电子透镜(包括磁性透镜)的像差分析。

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