Rigorous electromagnetic analysis of metallic cylindrical focusing micromirrors with high diffraction efficiency, achromatic aberration and long focal depth
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Physical and Theoretical Chemistry,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
Reference11 articles.
1. Rigorous electromagnetic analysis of diffractive cylindrical lenses
2. Boundary integral methods applied to the analysis of diffractive optical elements
3. Rigorous electromagnetic analysis of the common focusing characteristics of a cylindrical microlens with long focal depth and under multiwavelength illumination
4. Metallic surface-relief on-axis and off-axis focusing diffractive cylindrical mirrors
5. Rigorous electromagnetic analysis of a microcylindrical axilens with long focal depth and high transverse resolution
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1. Chromatic analysis of harmonic Fresnel lenses by FDTD and angular spectrum methods;Applied Optics;2018-06-25
2. Micro-Mirrors;Reference Module in Materials Science and Materials Engineering;2016
3. Optimization design of a diffractive axicon for improving the performance of long focal depth;Optics Communications;2014-11
4. Subwavelength focusing of micro grating-Fresnel lens;Optics Communications;2013-07
5. Rigorous electromagnetic analysis of a dual-metallic-cylindrical-focusing-micromirror array with long focal depth;Optik;2013-07
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