Author:
Qian Qinyu,Liu Pengfei,Fan Li,Zhao Liang,Wang Chinhua
Abstract
AbstractWe report on a non-sharp-corner quarter wave plate (NCQW) within the single layer of only 8 nm thickness structured by the Ag hollow elliptical ring array, where the strong localized surface plasmons (LSP) resonances are excited. By manipulating the parameters of the hollow elliptical ring, the transmitted amplitude and phase of the two orthogonal components are well controlled. The phase difference of π/2 and amplitude ratio of 1 is realized simultaneously at the wavelength of 834 nm with the transmission of 0.46. The proposed NCQW also works well in an ultrawide wavelength band of 110 nm, which suggests an efficient way of exciting LSP resonances and designing wave plates, and provides a great potential for advanced nanophotonic devices and integrated photonic systems.
Funder
The Natural Science Research of Jiangsu Higher Education Institutions of China
the Natural Science Foundation (Youth Fund) of Jiangsu Province
the National Natural Science Foundation of China
the project of the Priority Academic Program Development (PAPD) of Jiangsu Higher Education Institutions
Publisher
Springer Science and Business Media LLC
Reference28 articles.
1. Mueller, J. P., Rubin, N. A., Devlin, R. C., Groever, B. & Capasso, F. Metasurface polarization optics: Independent phase control of arbitrary orthogonal states of polarization. Phys. Rev. Lett. 118, 113901 (2017).
2. Khoo, E. H., Li, E. P. & Crozier, K. B. Plasmonic wave plate based on subwavelength nanoslits. Opt. Lett. 36, 2498–2500 (2011).
3. Zhao, Y. & Alu, A. Manipulating light polarization with ultrathin plasmonic metasurfaces. Phys. Rev. B 84, 205428 (2011).
4. Baida, F. I., Boutria, M., Oussaid, R. & Van Labeke, D. Enhanced-transmission metamaterials as anisotropic plates. Phys. Rev. B 82, 2109–2119 (2011).
5. Zhao, Y. & Alu, A. Tailoring the dispersion of plasmonic nanorods to realize broadhand optical meta-waveplates. Nano Lett. 13, 1086–1091 (2013).
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献