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基于光电二极管的超快电子显微镜时间零点测定

Photodiode-based time zero determination for ultrafast electron microscopy.

作者信息

Kempers S T, Borrelli S, Kieft E R, van Doorn H A, Mutsaers P H A, Luiten O J

机构信息

Eindhoven University of Technology, Coherence and Quantum Technology, 5600 MB Eindhoven, the Netherlands.

Thermo Fisher Scientific, Achtseweg Noord 5, 5651 GC Eindhoven, The Netherlands.

出版信息

Struct Dyn. 2023 Nov 6;10(6):064301. doi: 10.1063/4.0000218. eCollection 2023 Nov.

Abstract

Pump-probe experiments in ultrafast electron microscopy require temporal overlap between the pump and probe pulses. Accurate measurements of the time delay between them allows for the determination of the time zero, the moment in time where both pulses perfectly overlap. In this work, we present the use of a photodiode-based alignment method for these time zero measurements. The cheap and easy-to-use device consists of a photodiode in a sample holder and enables us to temporally align individual, single-electron pulses with femtosecond laser pulses. In a first device, a temporal resolution of 24 ps is obtained, limited by the photodiode design. Future work will utilize a smaller photodiode with a lower capacitance, which will increase the temporal resolution and add spatial resolution as well. This upgrade will bring the method toward the micrometer and picosecond spatiotemporal resolution.

摘要

超快电子显微镜中的泵浦-探测实验要求泵浦脉冲和探测脉冲在时间上重叠。对它们之间的时间延迟进行精确测量可以确定时间零点,即两个脉冲完美重叠的时刻。在这项工作中,我们展示了一种基于光电二极管的对准方法用于这些时间零点测量。这种廉价且易于使用的装置由样品架中的一个光电二极管组成,使我们能够在时间上使单个单电子脉冲与飞秒激光脉冲对准。在第一个装置中,受光电二极管设计限制,获得了24皮秒的时间分辨率。未来的工作将使用具有更低电容的更小光电二极管,这将提高时间分辨率并增加空间分辨率。这种升级将使该方法朝着微米和皮秒的时空分辨率发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b943/10629968/4fa1eac30339/SDTYAE-000010-064301_1-g001.jpg

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