378
Views
23
CrossRef citations to date
0
Altmetric
Research Articles

Dual-band cross polarization converter in bi-layered complementary chiral metamaterial

, &
Pages 937-940 | Received 10 Jun 2015, Accepted 19 Oct 2015, Published online: 13 Nov 2015

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Cheng-Jing Gao, Yuan-Zhe Sun, Han-Qing Dong & Hai-Feng Zhang. (2022) Achieving polarization control by utilizing electromagnetically induced transparency based on metasurface. Waves in Random and Complex Media 0:0, pages 1-23.
Read now
Mahdi Fartookzadeh. (2017) Design of metamirrors for linear to circular polarization conversion with super-octave bandwidth. Journal of Modern Optics 64:18, pages 1854-1861.
Read now
Hui-Bo Wang, Xia Zhou, Deng-Fei Tang & Jian-Feng Dong. (2017) Diode-like broadband asymmetric transmission of linearly polarized waves based on Fabry–Perot-like resonators. Journal of Modern Optics 64:7, pages 750-759.
Read now
Xiao-Min Zhai, Xia Zhou, Li-Fang Yao, Hui-Bo Wang & Jian-Feng Dong. (2016) Complementary chiral metamaterial with multi-band asymmetric transmission and mutual conversion. Journal of Electromagnetic Waves and Applications 30:8, pages 1005-1020.
Read now

Articles from other publishers (19)

Xin Zhang, Guan Wang, Jia Liu, Shiyi Zuo, Meichen Li, Shuang Yang, Yang Jia & Yachen Gao. (2023) A switchable and tunable multifunctional terahertz polarization converter based on a graphene metasurface. Physical Chemistry Chemical Physics 25:46, pages 31948-31959.
Crossref
Rajan Agrahari, Satyesh Singh, Diptiranjan Samantaray, Bambam Kumar, Somak Bhattacharyya, Manpuran Mahto & Pradip K. Jain. (2023) Triple‐band metasurface absorber for RF energy harvesting applications. Microwave and Optical Technology Letters 65:8, pages 2252-2261.
Crossref
Rajan Agrahari, Prashant Kumar Rajbhar, Manpuran Mahto & Pradip Kumar Jain. (2023) Metasurface assisted wideband multifunctional polarizer. Journal of Applied Physics 133:9.
Crossref
Wu Pan, Yongrui Li, Zhen Zhang, Bin Zhang & Haizhu Li. (2023) Design and analysis of a multi-band and dual-functional terahertz wave polarization converter based on asymmetric cross-shaped metasurface. Optics Communications 530, pages 129171.
Crossref
Chen Luo, Tian Sang, Shi Li, Chaoyu Yang, Zekun Ge & Yueke Wang. (2022) Stretchable Chiral Metamaterial for Flexible Control of Broadband Asymmetric Transmission. Plasmonics 18:1, pages 29-37.
Crossref
Cheng-Jing Gao, Yuan-Zhe Sun & Hai-Feng Zhang. (2022) Tunable dual-band linear-to-circular polarization conversion based on the electromagnetically induced transparency utilizing the graphene metamaterial. Physica E: Low-dimensional Systems and Nanostructures 141, pages 115225.
Crossref
Yu Tian, Zhiwei Chen, Fang-Fang Ren, Qingguo Du & Zhengying Li. (2021) High-Efficiency Asymmetric Transmission of Red-Near-Infrared Light Based on Chiral Metamaterial. Frontiers in Physics 9.
Crossref
Zi-Long Wang, Cai-Xing Hu, Hou-Bing Liu & Hai-Feng Zhang. (2020) A Newfangled Terahertz Absorber Tuned Temper by Temperature Field Doped by the Liquid Metal. Plasmonics 16:2, pages 425-434.
Crossref
Lei Wang, Fei Lv, Zhongyin Xiao & Xiaolong Ma. (2020) Theoretical and Experimental Verification of 90° Polarization Converter Based on Chiral Metamaterials. Plasmonics 16:1, pages 199-204.
Crossref
Qi Yuan, Hua Ma, Sai Sui, Jiafu Wang, Lin Zheng, Yueyu Meng & Shaobo Qu. (2020) Centrosymmetric topology optimization design achieves ultra-broadband polarization conversion and its further application. Journal of Physics D: Applied Physics 53:33, pages 335001.
Crossref
Wenbing Liu, Wei Wu, Lirong Huang, Yonghong Ling, Chunfa Ba, Shuang Li, Zenghui Chun & Hanhui Li. (2019) Dual-band asymmetric optical transmission of both linearly and circularly polarized waves using bilayer coupled complementary chiral metasurface. Optics Express 27:23, pages 33399.
Crossref
Fahad, Ruan & Chen. (2019) A Wideband Terahertz Transmissive Polarization Manipulator Based on Metasurfaces. Electronics 8:10, pages 1068.
Crossref
Baoqin Lin, Jianxin Guo, Lintao Lv, Jing Wu, Zhe Liu & Baigang Huang. (2019) A linear‐to‐circular polarization converter based on a bi‐layer frequency selective surface. International Journal of RF and Microwave Computer-Aided Engineering 29:7, pages e21750.
Crossref
Yongzhi Cheng, Wangyang Li & Xuesong Mao. (2019) TRIPLE-BAND POLARIZATION ANGLE INDEPENDENT 90° POLARIZATION ROTATOR BASED ON FERMAT'S SPIRAL STRUCTURE PLANAR CHIRAL METAMATERIAL. Progress In Electromagnetics Research 165, pages 35-45.
Crossref
Hao Ran Chen, Yong Zhi Cheng, Jing Cheng Zhao & Xue Song Mao. (2018) Multi-band terahertz chiral metasurface with giant optical activities and negative refractive index based on T -shaped resonators . Modern Physics Letters B 32:30, pages 1850366.
Crossref
Ahmet Ozer, Hasan Kocer & Hamza Kurt. (2018) Broadband and polarization-independent asymmetric transmission of visible light through a three-dimensional trapezoidal metallic metasurface. Journal of the Optical Society of America B 35:9, pages 2111.
Crossref
Jingcheng Zhao & Yongzhi Cheng. (2018) Ultrathin dual-band polarization angle independent 90° polarization rotator with giant optical activity based on planar chiral metamaterial. Applied Physics B 124:9.
Crossref
Bao-Qin Lin, Jian-Xin Guo, Peng Chu, Wen-Jun Huo, Zhuo Xing, Bai-Gang Huang & Lan Wu. (2018) Multiple-Band Linear-Polarization Conversion and Circular Polarization in Reflection Mode Using a Symmetric Anisotropic Metasurface. Physical Review Applied 9:2.
Crossref
Yannan Jiang, Lei Wang, Jiao Wang, Charles Nwakanma Akwuruoha & Weiping Cao. (2017) Ultra-wideband high-efficiency reflective linear-to-circular polarization converter based on metasurface at terahertz frequencies. Optics Express 25:22, pages 27616.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.