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Generation of rational optical vortices in a plasmonic spiral
Conference paper

Generation of rational optical vortices in a plasmonic spiral

Wei-Lun Huang, Hsiu-Hao Tsao and Chen-Bin Huang
2011 Conference on Lasers and Electro-Optics Europe and 12th European Quantum Electronics Conference, CLEO EUROPE/EQEC 2011, 5943646
2011

Abstract

Plasmonic spirals have attracted considerable research attentions recently with their intriguing capability in generating optical near-field vortices [1-3]. Under radial circularly polarized optical excitations of a single wavelength, surface plasmon waves can be analytically expressed for an observation point (R,θ) on the spiral plane as equation, where k spp is the wave-vector of the surface plasmon wave, J s the s th -order Bessel function, and the index s denotes the topological charge of the surface plasmon vortex [1]. For a right hand spiral (RHS) with 2 winding, surface plasmon vortices with s=0 and 2 can be selectively created using left-hand circularly polarized (LHCP) and right-hand circularly polarized (RHCP) input excitations of the same wavelength, respectively. Exploiting this unique property, plasmonic spirals have been proposed to act as nanoscopic polarization analyzers [1,2]. In another recent study, switching between higher-order vortices with topological charge difference of two (s=3 and 5) have also been demonstrated using LHCP and RHCP excitations of the same wavelength [3]. In this paper, the possibility to generate and switch between rational surface plasmon vortices are numerically demonstrated using a Raman frequency comb [4]. The feasibility in differentiating the resulting vortices through optical near-field measurements are assessed. Adaptive near-field control of a plasmonic spiral is also investigated. © 2011 IEEE.

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