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Axially Symmetric Composite Electromagnetic Mirror for Perfect Axial-Aberration Correction

机译:轴向对称的复合电磁镜,用于完美的轴向像差校正

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摘要

A new element of charged-particle optics is proposed and examined: an axially symmetric composite electromagnetic mirror employing a focusing magnetic field as well as an electrostatic one, the two fields overlapping. It is shown that the chromatic and spherical aberration coefficients of the mirror are opposite in sign to those found in conventional axially symmetric optics; their magnitude is twice the length of the paraxial particle trajectory as projected on the mirror axis of symmetry. As a result, the negative axial aberration coefficients can be varied over the wide range from a few millimeters to one meter with the mirror focal length and the particle energy being fixed. This property offers a way to fully compensate for the axial aberration of optimized ion or electron objective lenses in current use. A correction system incorporating the mirror is proposed. As compared with the sole correction arrangement used in electron optics, the system considered has about 1/5 times as many alignment degrees of freedom (mechanical and electrical) and should therefore display far greater stability; furthermore, it can work with ions as well as electrons.
机译:提出并研究了带电粒子光学的一种新元素:一种采用聚焦磁场和静电场的轴对称复合电磁镜,两个场重叠。结果表明,反射镜的色差和球面像差系数在符号上与传统的轴对称光学系统相反。它们的大小是投影在镜像对称轴上的近轴粒子轨迹长度的两倍。结果,在镜焦距和粒子能量固定的情况下,负轴向像差系数可以在几毫米到一米的宽范围内变化。该特性提供了一种方法,可以完全补偿当前使用的优化离子或电子物镜的轴向像差。提出了一种包含反射镜的校正系统。与电子光学中使用的唯一校正装置相比,所考虑的系统具有大约1/5倍的对准自由度(机械和电气),因此应该显示出更大的稳定性。此外,它可以与离子以及电子一起使用。

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