The deflection of charged particles is an intuitive way to visualize an electromagnetic oscillation of coherent light. Here, we present a real-time ultrafast oscilloscope for time-frozen visualization of a terahertz (THz) optical wave by probing light-driven motion of relativistic electrons. We found the unique condition of subwavelength metal slit waveguide for preserving the distortion-free optical waveform during its propagation. Momentary stamping of the wave, transversely travelling inside a metal slit, on an ultrashort wide electron bunch enables the single-shot recording of an ultrafast optical waveform. As a proof-of-concept experiment, we successfully demonstrated to capture the entire field oscillation of a THz pulse with a sampling rate of 75.7âTS/s. Owing to the use of transversely-wide and longitudinally-short electron bunch and transversely travelling wave, the proposed "single-shot oscilloscope" will open up new avenue for developing the real-time petahertz (PHz) metrology.
Real-time ultrafast oscilloscope with a relativistic electron bunch train.
利用相对论电子束流进行实时超快示波器
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作者:Baek In Hyung, Kim Hyun Woo, Bark Hyeon Sang, Jang Kyu-Ha, Park Sunjeong, Shin Junho, Kim Young Chan, Kim Mihye, Oang Key Young, Lee Kitae, Rotermund Fabian, Vinokurov Nikolay A, Jeong Young Uk
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2021 | 起止号: | 2021 Nov 25; 12(1):6851 |
| doi: | 10.1038/s41467-021-27256-x | ||
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