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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Design and implementation of a fs-resolved transmission electron microscope based on thermionic gun technology
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Design and implementation of a fs-resolved transmission electron microscope based on thermionic gun technology

机译:基于热电子枪技术的fs分辨透射电子显微镜的设计与实现

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摘要

In this paper, the design and implementation of a femtosecond-resolved ultrafast transmission electronmicroscope is presented, based on a thermionic gun geometry. Utilizing an additional magnetic lens between the electron acceleration and the nominal condenser lens system, a larger percentage of the electrons created at the cathode are delivered to the specimen without degrading temporal, spatial and energy resolution significantly, while at the same time maintaining the femtosecond temporal resolution. Using the photon-induced near field electron microscopy effect (PINEM) on silver nanowires the cross-correlation between the light and electron pulses was measured, showing the impact of the gun settings and initiating laser pulse duration on the electron bunch properties. Tuneable electron pulses between 300 fs and several ps can be obtained, and an overall energy resolution around 1 eV was achieved.
机译:本文提出了一种基于热电子枪几何形状的飞秒分辨超快速透射电子显微镜的设计和实现。在电子加速和标称聚光透镜系统之间使用一个附加的磁透镜,在阴极产生的较大比例的电子被传送到样品,而不会显着降低时间,空间和能量分辨率,同时保持飞秒的时间解析度。使用银纳米线上的光子感应近场电子显微镜效应(PINEM),测量了光脉冲和电子脉冲之间的互相关性,显示了电子枪设置和初始激光脉冲持续时间对电子束性能的影响。可获得300 fs至几ps的可调谐电子脉冲,并获得约1 eV的总能量分辨率。

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