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首页> 外文期刊>Ultramicroscopy >Ultrafast transmission electron microscopy using a laser-driven field emitter: Femtosecond resolution with a high coherence electron beam
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Ultrafast transmission electron microscopy using a laser-driven field emitter: Femtosecond resolution with a high coherence electron beam

机译:超快透射电子显微镜使用激光驱动场发射器:具有高相干电子束的飞秒分辨率

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摘要

We present the development of the first ultrafast transmission electron microscope (UTEM) driven by localized photoemission from a field emitter cathode. We describe the implementation of the instrument, the photoemitter concept and the quantitative electron beam parameters achieved. Establishing a new source for ultrafast TEM, the Gottingen UTEM employs nano-localized linear photoemission from a Schottky emitter, which enables operation with freely tunable temporal structure, from continuous wave to femtosecond pulsed mode. Using this emission mechanism, we achieve record pulse properties in ultrafast electron microscopy of 9 angstrom focused beam diameter, 200 fs pulse duration and 0.6 eV energy width. We illustrate the possibility to conduct ultrafast imaging, diffraction, holography and spectroscopy with this instrument and also discuss opportunities to harness quantum coherent interactions between intense laser fields and free-electron beams.
机译:我们介绍由局部发射极阴极的局部光曝光驱动的第一超快传输电子显微镜(UTEM)的开发。 我们描述了仪器的实现,光学钳概念和所达到的定量电子束参数。 建立UltraFast TEM的新来源,Gottingen Utem采用了来自肖特基发射器的纳米本地化线性光曝光,这使得从连续波到飞秒脉冲模式实现了可自由调谐的时间结构的操作。 使用这种排放机制,我们在超快电子显微镜下实现了9埃聚焦光束直径,200 fs脉冲持续时间和0.6 ev能量宽度的记录脉冲性能。 我们说明了利用该仪器进行超快成像,衍射,全息照相术和光谱的可能性,并且还讨论了利用强烈激光场和自由电子束之间的量子相干相互作用的机会。

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