We propose theoretically and demonstrate experimentally a dislocated double-layer metal grating structure, which operates as a unidirectional coupler capable of launching surface plasmon polaritons in a desired direction under normal illumination. The structure consists of a slanted dielectric grating sandwiched between two gold gratings. The upper gold grating has a nonzero lateral relative displacement with respect to the lower one. Numerical simulations show that a grating structure with 7 periods can convert 49% of normally incident light into surface plasmons with a contrast ratio of 78 between the powers of the surface plasmons launched in two opposite directions. We explain the unidirectional coupling phenomenon by the dislocation-in...
A cascaded-grating coupling scheme for unidirectionally coupling and launching surface plasmons from...
A compact unidirectional plasmonic coupler based on asymmetric cascaded nanoslits is proposed and th...
We experimentally demonstrate a novel ultrabroad-band and wide-angle unidirectional coupling scheme ...
ABSTRACT: We propose theoretically and demonstrate experimentally a dislocated double-layer metal gr...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
A new scheme for unidirectional coupling of surface plasmon polaritons (SPPs) from freely propagatin...
We study the light scattering properties of double layer gratings (DLGs) made from Au on SiO2 substr...
We study the light scattering properties of double layer gratings (DLGs) made from Au on SiO2 substr...
Copyright © 2001 American Institute of Physics. This article may be downloaded for personal use only...
Copyright © 2001 American Institute of Physics. This article may be downloaded for personal use only...
A cascaded-grating coupling scheme for unidirectionally coupling and launching surface plasmons from...
A compact unidirectional plasmonic coupler based on asymmetric cascaded nanoslits is proposed and th...
We experimentally demonstrate a novel ultrabroad-band and wide-angle unidirectional coupling scheme ...
ABSTRACT: We propose theoretically and demonstrate experimentally a dislocated double-layer metal gr...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
International audienceThe emerging field of plasmonics is based on exploiting the coupling between l...
A new scheme for unidirectional coupling of surface plasmon polaritons (SPPs) from freely propagatin...
We study the light scattering properties of double layer gratings (DLGs) made from Au on SiO2 substr...
We study the light scattering properties of double layer gratings (DLGs) made from Au on SiO2 substr...
Copyright © 2001 American Institute of Physics. This article may be downloaded for personal use only...
Copyright © 2001 American Institute of Physics. This article may be downloaded for personal use only...
A cascaded-grating coupling scheme for unidirectionally coupling and launching surface plasmons from...
A compact unidirectional plasmonic coupler based on asymmetric cascaded nanoslits is proposed and th...
We experimentally demonstrate a novel ultrabroad-band and wide-angle unidirectional coupling scheme ...