首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Static and dynamic imaging electron optics and spatial-temporal aberrations in a bi-electrode spherical concentric system with electrostatic focusing
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Static and dynamic imaging electron optics and spatial-temporal aberrations in a bi-electrode spherical concentric system with electrostatic focusing

机译:具有静电聚焦的双电极球形同心系统中的静态和动态成像电子光学和时空像差

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摘要

In imaging electron optics, for a concentric spherical system composed of two spherical electrodes with electrostatic focusing, the electrostatic potential distribution and the spatial-temporal trajectory of electron motion can be expressed by analytical forms. It is naturally to take such system as an ideal model to investigate the imaging properties, as well as the spatial-temporal aberrations, to analyze its particularity and to find the clue of universalities and regularities. Research on this problem has important significance, which can afford theoretical foundation not only in studying static electron optics for the night vision devices, but also in studying dynamic electron optics for high-speed image converter tubes. In the present paper, based on the practical electron ray equation and electron motion equation for a bi-electrode concentric spherical system with electrostatic focusing, the spatial-temporal trajectories of moving electrons emitted from the photocathode have been solved, the exact and approximate formulae for image position and flight time of electrons, have been deduced. Start from solutions of spatial-temporal trajectories, the electron optical spatial-temporal properties of this system are then discussed. According to the definitions of spatial-temporal aberrations, the paraxial and geometrical lateral aberrations, as well as the paraxial and geometrical temporal aberrations, have been deduced, that are classified by the order of z/φac and r/φac.
机译:在成像电子光学中,对于由两个带有静电聚焦的球形电极组成的同心球形系统,静电势分布和电子运动的时空轨迹可以用解析形式表示。很自然地将这种系统作为理想模型来研究成像特性以及时空像差,以分析其特殊性并找到普遍性和规律性的线索。对这一问题的研究具有重要的意义,不仅可以为夜视设备的静态电子光学研究提供理论依据,而且可以为高速图像转换管的动态电子光学研究提供理论依据。本文基于具有静电聚焦作用的双电极同心球形系统的实际电子射线方程和电子运动方程,求解了从光电阴极发射的运动电子的时空轨迹,并给出了精确的近似公式。推导了电子的图像位置和飞行时间。从时空轨迹的解开始,然后讨论该系统的电子光学时空特性。根据时空像差的定义,推导出近轴和几何横向像差,以及近轴和几何横向像差,按z /φac和r /φac的顺序进行分类。

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