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Polarization and Transmission Properties of Metamaterial-Based Three-Dimensional Plasmonic Structure
Li Hengyi; Luo Xiangang
Source PublicationIEEE PHOTONICS JOURNAL
Volume3Issue:3Pages:400-406
2011
Language英语
Subtype期刊论文
AbstractPolarization and transmission properties of metamaterial-based 3-D plasmonic structure are investigated using finite-difference time-domain (FDTD) methods. The structure is composed of metallic nanoboxes periodically placed on the SiO2 substrate. We simulate and compare characteristics of transmission for four different metal materials (i.e., Ag, Au, Al, and Cu) in terms of the functionality of linear to circular polarization transformation. Results indicate that Al-material-based nanostructure with optimized parameters can provide the highest transmission of 39.62% around the wavelength of 550 nm.; Polarization and transmission properties of metamaterial-based 3-D plasmonic structure are investigated using finite-difference time-domain (FDTD) methods. The structure is composed of metallic nanoboxes periodically placed on the SiO2 substrate. We simulate and compare characteristics of transmission for four different metal materials (i.e., Ag, Au, Al, and Cu) in terms of the functionality of linear to circular polarization transformation. Results indicate that Al-material-based nanostructure with optimized parameters can provide the highest transmission of 39.62% around the wavelength of 550 nm.
Document Type期刊论文
Identifierhttp://ir.ioe.ac.cn/handle/181551/6763
Collection微细加工光学技术国家重点实验室(开放室)
Corresponding AuthorLi Hengyi
Affiliation中国科学院光电技术研究所
Recommended Citation
GB/T 7714
Li Hengyi,Luo Xiangang. Polarization and Transmission Properties of Metamaterial-Based Three-Dimensional Plasmonic Structure[J]. IEEE PHOTONICS JOURNAL,2011,3(3):400-406.
APA Li Hengyi,&Luo Xiangang.(2011).Polarization and Transmission Properties of Metamaterial-Based Three-Dimensional Plasmonic Structure.IEEE PHOTONICS JOURNAL,3(3),400-406.
MLA Li Hengyi,et al."Polarization and Transmission Properties of Metamaterial-Based Three-Dimensional Plasmonic Structure".IEEE PHOTONICS JOURNAL 3.3(2011):400-406.
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