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Geometrical phase and surface plasmon focusing with azimuthal polarization
Authors:Chen Weibin  Nelson Robert L  Zhan Qiwen
Institution:Electro-Optics Program, University of Dayton, Dayton, Ohio 45469, USA. wchen2@udayton.edu
Abstract:Owing to a geometric phase effect, an isosceles triangular aperture etched into thin metal film leads to constructive or destructive interference of surface plasmons excited at the two equal sides under linearly polarized illumination. Through appropriate spatial arrangement of an array of triangles, a highly confined focal spot beyond the diffraction limit can be achieved at the geometric center under azimuthally polarized excitation with field enhancement comparable to a bull's eye plasmonic lens under radially polarized illumination. Through simply rotating the orientation of each triangle aperture by 90°, the plasmonic structure defocuses the same azimuthal polarization illumination due to destructive interference caused by a geometric π-phase difference between the two sides of the triangle and between the adjacent triangles.
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