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Single-shot imaging achieving 685 billion FPS using spatial multiplexing

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Eşlik, D.
Kesgin, B. U.
Teğin, U.

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eng

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Abstract

We demonstrate a compact and low-cost single-shot ultrafast imaging system capable of capturing transient dynamics at an effective frame rate of 685 billion frames per second with a sequence depth of ten frames. The approach relies on spatial multiplexing using a microlens array combined with spatially varying optical delay elements, enabling temporal information to be encoded across multiple spatial channels in a single camera exposure. Experimental validation is performed by imaging the evolution of a picosecond laser pulse, achieving a temporal resolution of 1.46 ps. The proposed architecture offers a scalable and accessible alternative to conventional ultrafast imaging systems based on streak cameras or complex compressed sensing schemes

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SPIE

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Electrical and electronics engineering

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Real-time Measurements, Rogue Phenomena, and Single-Shot Applications Xi

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10.1117/12.3079741

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