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Title of Journal: Plasmonics

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Abbravation: Plasmonics

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Springer US

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DOI

10.1002/asna.18841080305

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1557-1963

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Topology OptimizationBased Computational Design M

Authors: Yongbo Deng Zhenyu Liu Chao Song Junfeng Wu Yongshun Liu Yihui Wu
Publish Date: 2014/11/22
Volume: 10, Issue: 3, Pages: 569-583
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Abstract

This paper presents the topology optimizationbased computational design methodology for nanostructures in surface plasmon polaritons Using the proposed method nanostructures can be designed solely based on the user’s desired performance specification for the surface plasmon polaritons This topology optimizationbased computational design methodology is implemented based on the material interpolation with hybrid formulation of logarithmic and power law approaches to mimic the metal surface with exponential decay of the electromagnetic field The constructed computational design problem is analyzed using the continuous adjoint method and the filter and projection techniques are utilized to ensure the minimum length scale in the obtained nanostructures The outlined design methodology is used to investigate the nanostructures for localized surface plasmonic resonances extraordinary optical transmission and surface plasmonic cloaking respectively For localized surface plasmonic resonances and extraordinary optical transmission the metallic nanostructures are designed with spectra peaks at the prescribed wavelengths and the shift of the spectra peak is controlled by solving the computational design problem corresponding to a different incident wavelength for surface plasmonic cloaking the cloak covered at a curved metaldielectric interface is designed to bound the surface plasmon polariton at the interface and remove the radiation where the conventional simple isotropic dielectric readily available in nature is used instead of the material possessing gradient electromagnetic properties with challenges on realization for optical frequencies


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Other Papers In This Journal:

  1. Plasmon-Assisted Enhancement and Tuning of Optical Properties in β- In 2 S 3 Quantum Dots
  2. Near-Field Optical Analysis of Plasmonic Nano-Probes for Top-Illumination Tip-Enhanced Raman Scattering
  3. Superfocusing and Light Confinement by Surface Plasmon Excitation Through Radially Polarized Beam
  4. Optimization of Dielectric-Coated Silver Nanoparticle Films for Plasmonic-Enhanced Light Trapping in Thin Film Silicon Solar Cells
  5. Plasmonic Enhancement by a Continuous Gold Underlayer: Application to SERS Sensing
  6. Plasmon-Induced Photon Manipulation by Ag Nanoparticle-Coupled Graphene Thin-Film: Light Trapping for Photovoltaics
  7. Impedance Matching Induce High Transmission and Flat Response Band-Pass Plasmonic Waveguides
  8. Optical Properties and Local Electromagnetic Field Enhancement of Periodic Rectangular Nanohole Arrays in Au-Interlayer-Au Multilayer Films
  9. Surface Plasmon Polariton Modes at Interface of a Metal and an Ambichiral Sculptured Thin Film
  10. Dual Symmetry Breaking in Gold-Silica-Gold Multilayer Nanoshells
  11. Tunable Nonreciprocal Tunneling Based on Nonsymmetric Magnetoplasmonic Resonance Structure
  12. Effect of Edge Rounding on the Extinction Properties of Hollow Metal Nanoparticles
  13. Multi-Band Ultra-Sharp Transmission Response in All-Dielectric Resonant Structures Containing Kerr Nonlinear Media
  14. Optical Filter Design Using Background Wavelength Processing Techniques
  15. High-Sensitivity Refractive Index Sensor Based on D-Shaped Photonic Crystal Fiber with Rectangular Lattice and Nanoscale Gold Film
  16. Optical Manipulation of Dielectric Nanoparticles with Au Micro-racetrack Resonator by Constructive Interference of Surface Plasmon Waves
  17. Tailoring Infrared Refractory Plasmonic Material to Broadband Circularly Polarized Thermal Emitter
  18. Numerical study of nanoparticle sensors based on the detection of the two-photon-induced luminescence of gold nanorod antennas
  19. Strain Sensitivity of Electric-Magnetic Coupling in Flexible Terahertz Metamaterials
  20. Transmitive Spectral SPR Droplet Biosensing: Principle, Sensor Design, and Experimental Demonstration
  21. Near and Far-Field Properties of Nanoprisms with Rounded Edges
  22. Dual-Band Plasmonic Enhancement of Ag-NS@SiO 2 on Gain Medium’s Spontaneous Emission
  23. Emission and Transmission Properties of a Doubly Resonant 3D Nanodisk Yagi–Uda Antenna for Wireless Optical Communications
  24. Improving the Sensitivity of Fiber Surface Plasmon Resonance Sensor by Filling Liquid in a Hollow Core Photonic Crystal Fiber
  25. Near-Field Optical Experimental Investigation of Gold Nanohole Array
  26. Optical Curtain Effect: Extraordinary Optical Transmission Enhanced by Antireflection
  27. Plasmonic Tuning of Photoluminescence from Semiconducting Quantum Dot Assemblies
  28. A Three-Dimensional Plasmonic Nanostructure with Extraordinary Optical Transmission
  29. Spectral Red-Shift and Pulse Splitting in Nonlinear Dielectric-Loaded Plasmonic Waveguide
  30. Tunable Properties of Surface Plasmon Resonances: The Influence of Core–Shell Thickness and Dielectric Environment
  31. Chirality Switching Via Rotation of Bilayer Fourfold Meta-Structure
  32. A Plasmonic Wavelength-Selected Intersection Structure

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