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Propagation along longitudinally-varying surface plasmon waveguides, metal-insulator-metal waveguides and silicon on insulator (SOI) waveguides; Quantify the optical performance of silicon photonics components including grating couplers, Mach-Zender modulators, micro ring resonators, bends, splitters, mode
21 Dec 2017 Boltasseva, A., & Bozhevolnyi, S. I. (2006). Directional couplers using long-range surface plasmon polariton waveguides. I E E E Journal on Selected Topics in Quantum Electronics, 12(6), 1233-1241 tation of long-range surface plasmon polaritons (LR-SPPs) in a .. world.com/solutions/laser_diode.html.
Directional Couplers Using Long-Range Surface Plasmon Polariton Waveguides. Article · December 2006 with 42 Reads tation of long-range surface plasmon polaritons (LR-SPPs) in a. very broad wavelength range from 1000 to world.com/solutions/laser_diode.html. description to the investigated DCs, one can
27 Feb 2015 An analytical model to the modal characteristics of Metal-Insulator-Metal (MIM) plasmonic waveguide is proposed. An expression to . Lumerical, “Multicoefficient material modelling in FDTD," <www.lumerical.com/solutions/whitepapers/fdtd_multicoefficient_material_modeling.html.>Google Scholar.
We propose and comprehensively investigate Si-based plasmonic waveguides as a means to confine and manipulate photonic signals. The high refractive index of Si assures strong confinement and a very high level of photonic integration with achievable waveguide separations of the order of 10 nm and waveguide bends
A hybrid plasmonic waveguide is an optical waveguide that achieves strong light confinement by coupling the light guided by a dielectric waveguide and a plasmonic waveguide. It is formed by separating a medium of high refractive index (usually silicon) from a metal surface (usually gold or silver) by a small gap.
A hybrid plasmonic waveguide with a metal cap on a silicon-on-insulator rib (or slab) is presented. There is a low-index material nano-layer between the Si layer and the metal layer. The field enhancement in the nano-layer provides a nano-scale confinement of the optical field (e.g., 50nm ? 5nm) when operates at the
1 Feb 2015 An analytical model to the modal characteristics of Metal-Insulator-Metal (MIM) plasmonic waveguide is proposed. An expression to the propagation constant and losses as function in the refractive index, the waveguide width, and the wavelength is obtained and verified using finite difference based
Plasmonic devices such as nano antennas are a large interest for researchers due to possible large field enhancement in the nearfield of the device. This strong field enhancement might be used for single molecule detection and spectroscopy (SERS). In the paper "Comparison of electromagnetic field solvers for the 3D
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