Measurement of femtosecond dynamics of ultrafast electron beams through terahertz compression and time-stamping

Author:

Othman Mohamed A. K.1ORCID,Gabriel Annika E.1,Snively Emma C.1ORCID,Kozina Michael E.1,Shen Xiaozhe1,Ji Fuhao1,Lewis Samantha1ORCID,Weathersby Stephen1ORCID,Vasireddy Praful1,Luo Duan1ORCID,Wang Xijie1,Hoffmann Matthias C.1,Nanni Emilio A.1ORCID

Affiliation:

1. SLAC National Accelerator Laboratory, Stanford University , Menlo Park, California 94025, USA

Abstract

Visualizing ultrafast dynamics at the atomic scale requires time-resolved characterization with femtosecond temporal resolution. For fully relativistic electron bunch probes, existing techniques for single-shot ultrafast electron diffraction (UED) are limited by the achievable electron probe bunch length, charge, and timing jitter. We present the first experimental demonstration of dual-fed THz-driven compression and time-stamping that enables electron probes with improved temporal resolution. This technique utilizes two counter-propagating quasi-single-cycle THz pulses generated from two OH-1 organic crystals coupled into an optimized THz compressor structure. We demonstrate electron bunch compression and time-of-arrival jitter suppression by a factor of 3 paving the way toward unique opportunities for UED time-resolved measurements.

Funder

DOE

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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