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提高用于近场太赫兹成像的电光采样中的时间和空间分辨率。

Improving time and space resolution in electro-optic sampling for near-field terahertz imaging.

作者信息

Blanchard François, Tanaka Koichiro

出版信息

Opt Lett. 2016 Oct 15;41(20):4645-4648. doi: 10.1364/OL.41.004645.

Abstract

In this Letter, we present a significant improvement to time and space resolutions in electro-optic sampling (EO) for two-dimensional terahertz (THz) near-field imaging. Using a THz microscope, we readapt a recent EO sampling scheme based on optical probe spectrum filtering. Combined with an ultra-thin EO crystal, we achieve record broadband video-rate THz near-field imaging. Particularly, this new scheme improves the THz bandwidth, the imaging contrast, and the spatial resolution. To validate our method, we show THz near-field images ranging from 100 GHz to 4 THz with a spatial resolution up to λ/600 at 100 GHz. This demonstration positively affects the detection of intense THz pulses derived from the tilted-pulse-front excitation of lithium niobate and will accelerate our understanding of the interaction processes between electromagnetic waves and the conducting electrons of metallic interfaces.

摘要

在本信函中,我们展示了对二维太赫兹(THz)近场成像的电光采样(EO)在时间和空间分辨率方面的显著改进。使用太赫兹显微镜,我们重新采用了一种基于光学探针光谱滤波的近期电光采样方案。结合超薄电光晶体,我们实现了创纪录的宽带视频速率太赫兹近场成像。特别地,这种新方案提高了太赫兹带宽、成像对比度和空间分辨率。为验证我们的方法,我们展示了频率范围从100 GHz至4 THz的太赫兹近场图像,在100 GHz时空间分辨率高达λ/600。这一演示对检测源自铌酸锂倾斜脉冲前沿激发的强太赫兹脉冲有积极影响,并将加速我们对电磁波与金属界面传导电子之间相互作用过程的理解。

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