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Single-shot compressive spectral imaging with a dual-disperser architecture

Optics Express · 2007 · Vol. 15(21) · pp. 14013–14013
Michael E. GehmRenu JohnDavid J. BradyRebecca WillettTimothy J. Schulz

Abstract

This paper describes a single-shot spectral imaging approach based on the concept of compressive sensing. The primary features of the system design are two dispersive elements, arranged in opposition and surrounding a binary-valued aperture code. In contrast to thin-film approaches to spectral filtering, this structure results in easily-controllable, spatially-varying, spectral filter functions with narrow features. Measurement of the input scene through these filters is equivalent to projective measurement in the spectral domain, and hence can be treated with the compressive sensing frameworks recently developed by a number of groups. We present a reconstruction framework and demonstrate its application to experimental data.

Sparse and Compressive Sensing TechniquesRandom lasers and scattering mediaPhotoacoustic and Ultrasonic ImagingOpticsSpectral imagingCompressed sensingComputer scienceCoded apertureFilter (signal processing)Binary numberMaterials sciencePhysicsComputer vision
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Compressed sensing
IEEE Transactions on Information Theory · 2006 · 22,859 citations
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