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Journal ArticleDOI

Design and optimization method of a convex blazed grating in the Offner imaging spectrometer.

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TLDR
A new design and optimization method that combines rigorous coupled wave analysis and a particle swarm optimization algorithm to optimize the microstructure parameters of the convex-blazed grating in the Offner imaging spectrometer is proposed.
Abstract
The convex reflective diffraction grating is an essential optical component in Offner systems, which has been widely used in imaging spectrometers. We propose a new design and optimization method for the convex blazed grating in the Offner imaging spectrometer. The method integrates the macro- and microdesign of the optical system, and it can be used to design and optimize the convex blazed grating with high diffraction efficiency. Traditional geometric optics theory and image quality evaluation methods are used to design the macro-optical structure parameters of the Offner system. And then the incident ray information, such as the incident angle and the polarization states are calculated by using the three-dimensional polarization ray-tracing method. To improve the diffraction efficiency, we combine rigorous coupled wave analysis and a particle swarm optimization algorithm to optimize the microstructure parameters of the convex-blazed grating. Further, a convex-blazed grating in a mid-wave infrared Offner imaging spectrometer is designed as an example to illustrate our design method in detail. The design results indicate that the Offner imaging spectrometer has good imaging quality, and the average diffraction efficiency of the -1st diffraction order of the convex-blazed grating in the spectral coverage 3-5 µm is 82.24%. Compared to the traditional design method, the lowest spectral diffraction efficiency is improved from 59.88% to 69.24%, the highest spectral diffraction efficiency is improved from 90.45% to 91.84%, and the standard deviation is reduced from 7.82 to 6.62.

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Citations
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Journal ArticleDOI

High spectral resolution compact Offner spectrometer based on the aberration-reduced convex holographic gratings recorded by spherical waves under Rowland circle mounting.

TL;DR: In this article , a compact Offner imaging spectrometer with a high resolution based on an aberration-reduced convex holographic grating (ACHG), which is recorded by spherical waves under Rowland circle mounting is presented.
Journal ArticleDOI

Optical design of an Offner coded aperture snapshot spectral imaging system based on dual-DMDs in the mid-wave infrared band

TL;DR: In this paper, a CASSI system with two DMDs based on the Offner spectrometer is proposed to solve the problem of strict matching between the optical system and the cold stop of the infrared focal plane array in the mid-wave infrared band.
Journal ArticleDOI

Dispersion-engineered broadband diffractive optical elements with multilayer subwavelength structures.

TL;DR: In this article , the authors demonstrate broadband optical systems with multilayer subwavelength structures with different materials, making it possible to freely control the phase and phase dispersion of the structural units on a much larger scale than monolayer structures.
Journal ArticleDOI

Progress in the Preparation and Characterization of Convex Blazed Gratings for Hyper-Spectral Imaging Spectrometer: A Review

TL;DR: In this article , the authors summarized the effects of various grating groove shapes and structural parameters on the spectral range and diffraction efficiency of convex blazed gratings, after providing a brief introduction to the typical functions and applications.
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PDMS-PUA bi-directional replication technology and its applications.

TL;DR: In this article , a bi-directional replication technique using polydimethylsiloxane (PDMS) and polyurethane acrylate (PUA) was proposed to solve the problems of demolding, PDMS polymerization inhibition, and substrate flatness.
References
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Journal ArticleDOI

Formulation for stable and efficient implementation of the rigorous coupled-wave analysis of binary gratings

TL;DR: In this paper, the authors presented a stable and efficient numerical implementation of the analysis technique for one-dimensional binary gratings for both TE and TM polarization and for the general case of conical diffraction.
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Stable implementation of the rigorous coupled-wave analysis for surface-relief gratings: enhanced transmittance matrix approach

TL;DR: In this paper, an enhanced, numerically stable transmittance matrix approach is developed and is applied to the implementation of the rigorous coupled-wave analysis for surface-relief and multilevel gratings.
Journal ArticleDOI

Note on the S-matrix propagation algorithm

TL;DR: Comparisons of flop counts show that in performing S-matrix recursions in the absence of the symmetry, it is more efficient to go directly from W matrices to S matrices, however, using t matrices is equally and sometimes more advantageous, provided that the symmetry is utilized.
Journal ArticleDOI

Analytical design of an Offner imaging spectrometer

TL;DR: The analytical design of an imaging spectrometer based on the three-concentric-mirror (Offner) configuration is presented and high-optical-quality spectrometers are obtained without the use of aberration-corrected gratings, even for high speeds.
Journal ArticleDOI

Understanding diffraction grating behavior: including conical diffraction and Rayleigh anomalies from transmission gratings

TL;DR: In this paper, the authors present a theoretical analysis of non-paraxial parametric diffraction grating behavior in terms of the direction cosines of the incident and diffracted angles.
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