Opto-Electronic Engineering, Volume. 52, Issue 5, 250023(2025)
Theoretical and experimental study on end-to-end hybrid multi-order diffractive lens design
[1] Wang L, Liu B, Wu C et al. Characteristics analysis and test of LiDAR based on diffraction lens receiving[J]. Opto-Electron Eng, 51, 240032(2024).
[2] Park K W, Han J Y, Bae J et al. Novel compact dual-band LOROP camera with telecentricity[J]. Opt Express, 20, 10921-10932(2012).
[3] Li R C, Feng L J, Xu K J et al. Optical design of an integrated imaging system of optical camera and synthetic aperture radar[J]. Opt Express, 29, 36796-36812(2021).
[4] Li R C, Zou G Y, Feng L J et al. Design of a dual-band compact integrated remote sensing system for visible light and long-wave infrared[J]. Appl Sci, 11, 9370(2021).
[5] Guo Y L, Yu X, Yu T et al. Design of visible and IR infrared dual-band common-path telescope system[J]. Proc SPIE, 10616, 1061613(2017).
[6] Pinilla S, Fröch J E, Miri Rostami S R et al. Miniature color camera via flat hybrid meta-optics[J]. Sci Adv, 9, eadg7297(2023).
[7] Bayati E, Pestourie R, Colburn S et al. Inverse designed extended depth of focus meta-optics for broadband imaging in the visible[J]. Nanophotonics, 11, 2531-2540(2022).
[8] Jeon D S, Baek S H, Yi S et al. Compact snapshot hyperspectral imaging with diffracted rotation[J]. ACM Trans Graph, 38, 117(2019).
[9] Sun Q L, Wang C L, Fu Q et al. End-to-end complex lens design with differentiate ray tracing[J]. ACM Trans Graph, 40, 71(2021).
[10] Yang X G, Fu Q, Heidrich W. Curriculum learning for ab initio deep learned refractive optics[J]. Nat Commun, 15, 6572(2024).
[12] Tseng E, Mosleh A, Mannan F et al. Differentiable compound optics and processing pipeline optimization for end-to-end camera design[J]. ACM Trans Graph, 40, 18(2021).
[15] Peng Y F, Sun Q L, Dun X et al. Learned large field-of-view imaging with thin-plate optics[J]. ACM Trans Graph, 38, 219(2019).
[16] Sitzmann V, Diamond S, Peng Y F et al. End-to-end optimization of optics and image processing for achromatic extended depth of field and super-resolution imaging[J]. ACM Trans Graph, 37, 114(2018).
[17] Akpinar U, Sahin E, Meem M et al. Learning wavefront coding for extended depth of field imaging[J]. IEEE Trans Image Process, 30, 3307-3320(2021).
[18] Milster T D, Kim Y S, Wang Z C et al. Multiple-order diffractive engineered surface lenses[J]. Appl Opt, 59, 7900-7906(2020).
[19] Wang Z C, Kim Y, Milster T D. High-harmonic diffractive lens color compensation[J]. Appl Opt, 60, D73-D82(2021).
[21] Goodman J W, Freeman W. H. Introduction to Fourier optics[M](2017).
[22] Laborde V, Loicq J, Habraken S. Modeling infrared behavior of multilayer diffractive optical elements using Fourier optics[J]. Appl Opt, 60, 2037-2045(2021).
[25] Mohammad N, Meem M, Shen B et al. Broadband imaging with one planar diffractive lens[J]. Sci Rep, 8, 2799(2018).
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Xijun Zhao, Bin Fan, Jun Liao. Theoretical and experimental study on end-to-end hybrid multi-order diffractive lens design[J]. Opto-Electronic Engineering, 2025, 52(5): 250023
Category: Article
Received: Feb. 5, 2025
Accepted: Mar. 12, 2025
Published Online: Jul. 18, 2025
The Author Email: Bin Fan (范斌)