Ultra-broadband achromatic imaging with diffractive photon sieves

被引:0
|
作者
Xiaonan Zhao
Jingpei Hu
Yu Lin
Feng Xu
Xiaojun Zhu
Donglin Pu
Linsen Chen
Chinhua Wang
机构
[1] College of Physics,
[2] Optoelectronics and Energy & Collaborative Innovation Center of Suzhou Nano Science and Technology,undefined
[3] Soochow University,undefined
[4] Key Lab of Advanced Optical Manufacturing Technologies of Jiangsu Province & Key Lab of Modern Optical Technologies of Education Ministry of China,undefined
[5] Soochow University,undefined
[6] School of Electronics and Information,undefined
[7] Nantong University,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Diffractive optical elements suffer from large chromatic aberration due to the strong wavelength-dependent nature in diffraction phenomena and therefore, diffractive elements can work only at a single designed wavelength, which significantly limits the applications of diffractive elements in imaging. Here, we report on a demonstration of a wavefront coded broadband achromatic imaging with diffractive photon sieves. The broadband diffraction imaging is implemented with a wavefront coded pinhole pattern that generates equal focusing power for a wide range of operating wavelength in a single thin-film element without complicated auxiliary optical system. Experimental validation was performed using an UV-lithography fabricated wavefront coded photon sieves. Results show that the working bandwidth of the wavefront coded photon sieves reaches 28 nm compared with 0.32 nm of the conventional one. Further demonstration of the achromatic imaging with a bandwidth of 300 nm is also performed with a wavefront coded photon sieves integrated with a refractive element.
引用
收藏
相关论文
共 50 条
  • [31] Ultra-broadband Tungsten Absorber
    Rana, Ahsan Sarwar
    Mehmood, Muhammad Qasim
    Jeong, Heongyeong
    Kim, Inki
    Rho, Junsuk
    [J]. 2018 PROGRESS IN ELECTROMAGNETICS RESEARCH SYMPOSIUM (PIERS-TOYAMA), 2018, : 297 - 300
  • [32] Ultra-broadband microfiber-coupled superconducting single-photon detector
    Hou, Xintong
    Yao, Ni
    You, Lixing
    Li, Hao
    Wang, Yong
    Zhang, Weijun
    Wang, Heqing
    Liu, Xiaoyu
    Fang, Wei
    Tong, Limin
    Wang, Zhen
    Xie, Xiaoming
    [J]. OPTICS EXPRESS, 2019, 27 (18) : 25241 - 25250
  • [33] Design and analysis of broadband diffractive optical element for achromatic focusing
    Wang, Shaoqing
    Zhou, Changhe
    Liu, Zhao
    Li, Hao
    [J]. HOLOGRAPHY, DIFFRACTIVE OPTICS, AND APPLICATIONS VII, 2017, 10022
  • [34] Refraction of Flexural Waves by Ultra-Broadband Achromatic Meta-Slab With Wavelength-Dependent Phase Shifts
    Liu, Feng
    Yang, Zhichun
    Shi, Pengtao
    Shen, Yizhou
    Cao, Liyun
    Xu, Yanlong
    [J]. Journal of Applied Mechanics, Transactions ASME, 2022, 89 (04):
  • [35] Ultra-broadband photonic patch antenna
    Lopez, E. R.
    Bui, L. A.
    Ghorbani, K.
    Rowe, W. S. T.
    Mitchell, A.
    [J]. 2006 IEEE MTT-S INTERNATIONAL MICROWAVE SYMPOSIUM DIGEST, VOLS 1-5, 2006, : 1939 - +
  • [36] Fast method for designing broadband achromatic diffractive optical elements
    Hu, Haiquan
    Xu, Hao
    Chen, Yueting
    Xu, Zhihai
    Li, Qi
    Feng, Huajun
    Jiang, Tingting
    [J]. OPTICS EXPRESS, 2022, 30 (19) : 33926 - 33939
  • [37] Ultra-broadband terahertz perfect absorber
    Zang, XiaoFei
    Shi, Cheng
    Peng, Yan
    Zhu, YiMing
    [J]. 2015 40TH INTERNATIONAL CONFERENCE ON INFRARED, MILLIMETER AND TERAHERTZ WAVES (IRMMW-THZ), 2015,
  • [38] Ultra-broadband Spectral Beam Combiner
    Stanton, Eric J.
    Heck, Martijn J. R.
    Bovington, Jock
    Spott, Alexander
    Bowers, John E.
    [J]. 2015 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2015,
  • [39] Ultra-broadband directional thermal emission
    Wang, Qiuyu
    Liu, Tianji
    Li, Longnan
    Huang, Chen
    Wang, Jiawei
    Xiao, Meng
    Li, Yang
    Li, Wei
    [J]. NANOPHOTONICS, 2024, 13 (05) : 793 - 801
  • [40] Ultra-broadband microstrip directional couplers
    Naeimi, Tohid
    Ahmadi, Arash
    [J]. IET SCIENCE MEASUREMENT & TECHNOLOGY, 2020, 14 (09) : 803 - 808