Publication: Single-shot imaging achieving 685 billion FPS using spatial multiplexing
Program
KU-Authors
KU Authors
Co-Authors
Eşlik, D.
Kesgin, B. U.
Teğin, U.
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Date
Language
eng
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N/A
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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
Source
Publisher
SPIE
Subject
Electrical and electronics engineering
Citation
Has Part
Source
Real-time Measurements, Rogue Phenomena, and Single-Shot Applications Xi
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Edition
DOI
10.1117/12.3079741
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Creative Commons license
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