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A 2-GHz discrete-spectrum waveband-division microscopic imaging system

机译:2 GHz离散光谱波段划分显微成像系统

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摘要

Limited by dispersion-induced pulse overlap, the frame rate of serial time-encoded amplified microscopy is confined to the megahertz range. Replacing the ultra-short mode-locked pulse laser by a multi-wavelength source, based on waveband-division technique, a serial time stretch microscopic imaging system with a line scan rate of in the gigahertz range is proposed and experimentally demonstrated. In this study, we present a surface scanning imaging system with a record line scan rate of 2 GHz and 15 pixels. Using a rectangular spectrum and a sufficiently large wavelength spacing for waveband-division, the resulting 2D image is achieved with good quality. Such a superfast imaging system increases the single-shot temporal resolution towards the sub-nanosecond regime. (C) 2014 Elsevier B.V. All rights reserved.
机译:受弥散引起的脉冲重叠的限制,串行时间编码放大显微镜的帧频被限制在兆赫兹范围内。提出了一种基于波段分割技术的多波长光源替代超短锁模脉冲激光器,并提出了一种行扫描速率为千兆赫兹的串行时间拉伸显微成像系统。在这项研究中,我们提出了一种表面扫描成像系统,其记录线扫描速率为2 GHz,像素为15。使用矩形光谱和足够大的波长间隔进行波段划分,可以高质量获得最终的2D图像。这样的超快成像系统提高了朝亚纳秒范围的单次时间分辨率。 (C)2014 Elsevier B.V.保留所有权利。

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