| Literature DB >> 25115592 |
Kun-Tong Tsai1, Gregory A Wurtz, Jen-You Chu, Tian-You Cheng, Huai-Hsien Wang, Alexey V Krasavin, Jr-Hau He, Brian M Wells, Viktor A Podolskiy, Juen-Kai Wang, Yuh-Lin Wang, Anatoly V Zayats.
Abstract
Nanowire-based plasmonic metamaterials exhibit many intriguing properties related to the hyperbolic dispersion, negative refraction, epsilon-near-zero behavior, strong Purcell effect, and nonlinearities. We have experimentally and numerically studied the electromagnetic modes of individual nanowires (meta-atoms) forming the metamaterial. High-resolution, scattering-type near-field optical microscopy has been used to visualize the intensity and phase of the modes. Numerical and analytical modeling of the mode structure is in agreement with the experimental observations and indicates the presence of the nonlocal response associated with cylindrical surface plasmons of nanowires.Entities:
Keywords: Metamaterials; SNOM; epsilon-near-zero; nanowires; nonlocality; plasmonics
Year: 2014 PMID: 25115592 DOI: 10.1021/nl501283c
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189