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通过复用结构化图像捕获实现单脉冲纳秒分辨率多帧被动成像。

Single-shot nanosecond-resolution multiframe passive imaging by multiplexed structured image capture.

作者信息

Gragston Mark, Smith Cary, Kartashov Daniil, Shneider Mikhail N, Zhang Zhili

出版信息

Opt Express. 2018 Oct 29;26(22):28441-28452. doi: 10.1364/OE.26.028441.

Abstract

The Multiplexed Structured Image Capture (MUSIC) technique is used to demonstrate single-shot multiframe passive imaging, with a nanosecond difference between the resulting images. This technique uses modulation of light from a scene before imaging, in order to encode the target's temporal evolution into spatial frequency shifts, each of which corresponds to a unique time and results in individual and distinct snapshots. The resulting images correspond to different effective imaging gate times, because of the optical path delays. Computer processing of the multiplexed single-shot image recovers the nanosecond-resolution evolution. The MUSIC technique is used to demonstrate imaging of a laser-induced plasma. Simultaneous single-shot measurements of electron numbers by coherent microwave scattering were obtained and showed good agreement with MUSIC characterization. The MUSIC technique demonstrates spatial modulation of images used for passive imaging. This allows multiple frames to be stacked into a single image. This method could also pave the way for real-time imaging and characterization of ultrafast processes and visualization, as well as general tracking of fast objects.

摘要

复用结构化图像捕获(MUSIC)技术用于演示单次多帧被动成像,所得图像之间存在纳秒级差异。该技术在成像前对来自场景的光进行调制,以便将目标的时间演化编码为空间频率偏移,每个偏移对应一个独特的时间,并产生单独且清晰的快照。由于光路延迟,所得图像对应于不同的有效成像门控时间。对复用单次图像进行计算机处理可恢复纳秒分辨率的演化。MUSIC技术用于演示激光诱导等离子体的成像。通过相干微波散射同时获得了电子数的单次测量结果,且与MUSIC表征结果显示出良好的一致性。MUSIC技术展示了用于被动成像的图像空间调制。这使得多帧能够堆叠成单个图像。该方法还可为超快过程的实时成像和表征、可视化以及快速物体的一般跟踪铺平道路。

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