Paper
21 March 2023 Russian quadruplet quadrupole based electron beam optics for ultrafast electron microscopy
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Proceedings Volume 12595, Advanced Fiber Laser Conference (AFL2022); 125951D (2023) https://doi.org/10.1117/12.2668361
Event: Advanced Fiber Laser Conference (AFL2022), 2022, Changsha, China
Abstract
Mega-electron-Volt Ultrafast Electron Microscope (MeV UEM) has become a promising tool to real-time observe ultrafast dynamics at the atomic scale, where a magnetic objective lens system is critical to manipulating the high-energy beam to achieve point-to-point imaging. However, the upper limit of spatial resolution is mainly determined by the high-order chromatic aberration resulting from the electron energy spread and the imaging lens system. A magnetic lens system based on the Russian Quadruplet (RQ) is being studied to improve the degree of symmetry and further reduce the aberration. The beam optics design and multi-target optimization are finished to achieve a good spatial resolution of point-to-point imaging. This paper will introduce the theoretical deviation and design results of our first-stage imaging lens system, and second-order beam optics is optimized further to improve the resolution.
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Yi Yuan, Jian Wang, Danlei Fan, Zhengqiu Luo, Ziyu Fan, Xiaofei Li, Jinfeng Yang, and Kuanjun Fan "Russian quadruplet quadrupole based electron beam optics for ultrafast electron microscopy", Proc. SPIE 12595, Advanced Fiber Laser Conference (AFL2022), 125951D (21 March 2023); https://doi.org/10.1117/12.2668361
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KEYWORDS
Imaging systems

Matrices

Optical design

Chromatic aberrations

Ultrafast imaging

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