Spatially and Spectrally Resolved Orbital Angular Momentum Interactions in Plasmonic Vortex Generators

Abstract

Understanding the near-field electromagnetic interactions that produce optical orbital angular momentum (OAM) is crucial for integrating twisted light into nanotechnology. Here, we examine the cathodoluminescence (CL) of plasmonic vortices carrying OAM generated in spiral nanostructures. The nanospiral geometry defines a photonic local density of states that is sampled by the electron probe in a scanning transmission electron microscope (STEM), thus accessing the optical response of the plasmonic vortex with high spatial and spectral resolution. We map the full spectral dispersion of the plasmonic vortex in spiral structures designed to yield increasing topological charge. Additionally, we fabricate nested nanospirals and demonstrate that OAM from one nanospiral can be coupled to the nested nanospiral, resulting in enhanced luminescence in concentric spirals of like handedness with respect to concentric spirals of opposite handedness. The results illustrate the potential for generating and coupling plasmonic vortices in chiral nanostructures for sensitive detection and manipulation of optical OAM.

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Document Details

Document Type
Technical Report
Publication Date
Mar 20, 2019
Accession Number
AD1097665

Entities

People

  • Benjamin J. Lawrie
  • Jordan A Hachtel
  • Juan Carlos Idrobo
  • Matthew A. Feldman
  • Matthew F. Chisholm
  • Richard F. Haglund
  • Roderick Ii B. Davidson
  • Sang-Yeon Cho
  • Sokrates T. Pantelides

Organizations

  • United States Naval Research Laboratory

Tags

Communities of Interest

  • Advanced Electronics
  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Angular Momentum
  • Detection
  • Electron Microscopes
  • Electron Microscopy
  • Far Field
  • Geometry
  • Materials
  • Materials Science
  • Microscopes
  • Microscopy
  • Optical Phenomena
  • Optical Properties
  • Optics
  • Polaritons
  • Surface Plasmon Polaritons
  • Surface Plasmon Resonance
  • Surface Plasmons

Fields of Study

  • Physics

Readers

  • Electromagnetic Wave Scattering and Antenna Radiation Engineering
  • Fluid Mechanics and Fluid Dynamics.
  • Nanoscale Plasmonic Nanotechnology

Technology Areas

  • Biotechnology
  • Microelectronics
  • Space