Abstract
We review the design and assessment techniques that underlie a number of successfully deployed space and airborne imaging spectrometers that have been demonstrated to achieve demanding specifications in terms of throughput and response uniformity. The principles are illustrated with telescope designs as well as spectrometer examples from the Offner and Dyson families. We also show how the design space can be extended with the use of freeform surfaces and provide additional design examples with grating as well as prism dispersive elements.
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CITATION STYLE
Mouroulis, P., & Green, R. O. (2018). Review of high fidelity imaging spectrometer design for remote sensing. Optical Engineering, 57(04), 1. https://doi.org/10.1117/1.oe.57.4.040901
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