Optimizing Optical Switching of Non-linear Hyperbolic Metamaterials

Abstract

Modern optical materials are engineered to be used as optical devices in specific applications, such as optical computing. For optical computing, efficient forms of a particular device, the optical switch, have still not been successfully demonstrated. This problem is addressed in this research through the use of designed optical metamaterials, specifically, hyperbolic metamaterials, which offer the possibility of large non-linear properties with a low switching intensity. One-dimensional layered hyperbolic metamaterials composed of alternating layers metal and dielectric were used here, with ITO as the metal and SiO2 as the dielectric. The non-linear behavior of the ITO/SiO2 layered structure was first modeled and optimized. Samples were then fabricated using this optimized design through physical vapor deposition at the Materials and Manufacturing Directorate of the Air Force Research Laboratory, and the linear and non-linear properties of these samples were measured by ellipsometry and the Z-scan technique, respectively. These materials showed a large enhancement of their effective nonlinear properties, and an intensity dependent switching behavior where the sign of the non-linear absorption coefficient changes from positive to negative. This switching behavior has a switching intensity near 15 GW/cm2 and switching width of about 0.15. This is the first experimental demonstration of such behavior in a simple one-dimensional layered hyperbolic metamaterial. Since this behavior is tunable, this technique may now be used to further engineer devices for specific applications. The unique properties of these materials increase their potential for use in optical switching applications.

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Document Details

Document Type
Technical Report
Publication Date
Sep 15, 2022
Accession Number
AD1181201

Entities

People

  • James A. Ethridge

Organizations

  • Air Force Institute of Technology

Tags

Communities of Interest

  • Advanced Electronics

DTIC Thesaurus Topics

  • Absorption Coefficients
  • Air Force
  • Computational Science
  • Genetic Algorithms
  • Lasers
  • Materials Laboratories
  • Materials Processing
  • Materials Science
  • Materials Testing
  • Metamaterials
  • Neural Networks
  • Optical Materials
  • Optical Properties
  • Optics
  • Photonic Metamaterials
  • Physical Vapor Deposition
  • Plasmonic Metamaterials
  • Refractive Index
  • Surface Plasmon Polaritons

Readers

  • Control Systems Engineering.
  • Nanofabrication and Microfabrication.
  • Optical Physics and Photonics.

Technology Areas

  • Microelectronics