Enhancing the efficiency of slit-coupling to surface-plasmon-polaritons via dispersion engineering.
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[1] Sergey I. Bozhevolnyi,et al. Polymer-based surface-plasmon-polariton stripe waveguides at telecommunication wavelengths , 2003 .
[2] M. Mansuripur,et al. Transmission of light through slit apertures in metallic films , 2004, IEEE Transactions on Magnetics.
[3] A. Requicha,et al. Plasmonics—A Route to Nanoscale Optical Devices , 2001 .
[4] Henri Lezec,et al. Diffracted evanescent wave model for enhanced and suppressed optical transmission through subwavelength hole arrays. , 2004, Optics express.
[5] Philippe Lalanne,et al. Near-field scattered by a single nanoslit in a metal film. , 2007, Applied optics.
[6] Pierre Berini,et al. Demonstration of integrated optics elements based on long-ranging surface plasmon polaritons. , 2005, Optics express.
[7] M. Kowarz,et al. Homogeneous and evanescent contributions in scalar near-field diffraction. , 1995, Applied optics.
[8] Anne-Laure Baudrion,et al. Coupling efficiency of light to surface plasmon polariton for single subwavelength holes in a gold film. , 2008, Optics express.
[9] J. Wuenschell,et al. Surface plasmon dynamics in an isolated metallic nanoslit. , 2006, Optics express.
[10] P Lalanne,et al. Theory of surface plasmon generation at nanoslit apertures. , 2005, Physical review letters.
[11] Ji-Hun Kang,et al. Control of surface plasmon generation efficiency by slit-width tuning , 2008 .
[12] Radan Slavik,et al. Ultrahigh resolution long range surface plasmon-based sensor , 2007 .
[13] Philippe Lalanne,et al. Efficient generation of surface plasmon by single-nanoslit illumination under highly oblique incidence , 2009 .