首页> 外文会议>Frontiers in ultrafast optics: biomedical, scientific, and industrial applications XV >Compressive ultrahigh-speed continuous imaging using spectrally-structured ultrafast laser pulses
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Compressive ultrahigh-speed continuous imaging using spectrally-structured ultrafast laser pulses

机译:使用光谱结构的超快激光脉冲进行压缩超高速连续成像

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We demonstrate an ultrahigh-rate imaging system applied to very high speed microscopic flows. Chirp processing of ultrafast laser pulses in optical fiber is employed to create pseudorandom spectral patterns at a rate of one unique pattern per pulse. These spectral patterns then serve as structured illumination of the object flows inside a 1D spatial disperser before digitization at a rate of one sample per optical pulse with a fast single pixel photodetector. Diffraction-limited microscopic imaging of flows up to 31.2 m/s is achieved at up to 19.8 and 39.6 Gigapixel/sec rates from a 720 MHz acquisition rate.
机译:我们演示了超高速成像系统,适用于超高速显微流。光纤中超快激光脉冲的处理用于以每个脉冲一个唯一的模式的速率创建伪随机光谱模式。这些光谱图样然后用作对象流在1D空间分散器内部的结构化照明,然后使用快速单像素光电探测器以每个光脉冲一个样本的速率进行数字化。从720 MHz采集速率开始,以高达19.8和39.6 Gigapixel / sec的速率实现了流量高达31.2 m / s的衍射极限显微成像。

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