Infrared and Laser Engineering, Volume. 53, Issue 10, 20240319(2024)
Substrate material selection method for multilayer diffraction elements based on extended scalar diffraction theory
[9] Yutong MENG, Mingxu PIAO, Qi WANG. Design of refraction-diffraction hybrid annular aperture ultra-thin imaging optical system. Acta Photonics, 48, 1211003(2019).
[12] [12] XU Feng, CHEN Yujie, ZHENG Penglei, et al. A monolithic wideb achromatic refractive hybrid lens its design method: China, CN109270607A[P]. 20200512. (in Chinese)
[13] Hongtao YANG, Xiaofan YANG, Chao MEI. Design of refractive hybrid infrared dual-band zoom optical system. Infrared and Laser Engineering, 49, 20200036(2020).
[14] Min LIU, Dingquan LIU, Sheng ZHOU. Design of 3.7-4.8 μm infrared refractive mixture mirror introducing surface microstructure. Infrared Technology, 41, 918-923(2019).
[15] Shan MAO, Na XIE, Jianlin ZHAO. Optimal design and analysis of dual-band double-layer diffractive optical elements under oblique incidence. Acta Optica Sinica, 40, 1605001-17(2020).
[16] [16] SWANSON G J . Binary optics technology: Theetical limits on the diffraction efficiency of multilevel diffractive optical elements[J]. MIT Tech Rep , 1991, 914: 127.
[19] Liangliang YANG, Fahua SHEN, Qi ZHAO. Design of diffractive optical elements based on extended scalar diffraction theory. Optoelectronics Technology, 43, 62-66(2023).
Get Citation
Copy Citation Text
Zonglin LIANG, Bo ZHANG, Yuanming ZHAO, Mingxu PIAO, Yiyang DONG, Yueling ZHANG, Shoufeng TONG. Substrate material selection method for multilayer diffraction elements based on extended scalar diffraction theory[J]. Infrared and Laser Engineering, 2024, 53(10): 20240319
Category:
Received: Jul. 15, 2024
Accepted: --
Published Online: Dec. 13, 2024
The Author Email: