首页> 外文会议>International symposium on photoelectronic detection and imaging;ISPDI 2009 >Paraxial imaging electron optics and its spatial-temporal aberrations for a bi-electrode concentric spherical system with electrostatic focusing
【24h】

Paraxial imaging electron optics and its spatial-temporal aberrations for a bi-electrode concentric spherical system with electrostatic focusing

机译:具有静电聚焦的双电极同心球面系统的近轴成像电子光学及其时空像差

获取原文

摘要

As is known, the paraxial solutions play an important role in studying electron optical imaging system and its aberrations, but the investigation of a bi-electrode concentric spherical system with electrostatic focusing directly from paraxial electron ray equation and paraxial electron motion equation has not been done before. In this paper, we shall use the paraxial equations to study the spatial-temporal trajectories and their aberrations for a bi-electrode concentric spherical system with electrostatic focusing. In the present paper, start from the paraxial electron ray equation and paraxial electron motion equation, the paraxial spatial-temporal trajectory of moving electron emitted from the cathode has been solved for a bi-electrode concentric spherical system with electrostatic focusing. The paraxial static and dynamic imaging electron optics, as well as the paraxial spatial-temporal aberrations in this system are then discussed, the regularity of paraxial imaging optical properties has been given. The paraxial spatial aberrations, as well as the paraxial temporal aberrations with different orders, have been defined and deduced, that are classified by the order of (ε_z/Φ_(ac))~(1/2) and (ε_r/Φ_(ac))~(1/2).The same conclusions about paraxial spatial and temporal aberrations as we have done before will be given.
机译:众所周知,近轴解在研究电子光学成像系统及其像差方面起着重要作用,但是尚未直接从近轴电子射线方程和近轴电子运动方程研究具有静电聚焦的双电极同心球面系统。前。在本文中,我们将使用近轴方程来研究带有静电聚焦的双电极同心球形系统的时空轨迹及其像差。本文从近轴电子射线方程和近轴电子运动方程出发,解决了带有静电聚焦的双电极同心球形系统从阴极发射出的移动电子的近轴时空轨迹。然后讨论了近轴静态和动态成像电子光学系统以及该系统中的近轴时空像差,给出了近轴成像光学特性的规律性。定义并推导了近轴空间像差以及具有不同阶数的近轴时间像差,并按(ε_z/Φ_(ac))〜(1/2)和(ε_r/Φ_(ac ))〜(1/2)。将给出与我们之前所做的关于近轴时空像差的相同结论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号