New Materials for Optical Computations. Phase 1. Feasibility Study.

Abstract

High speed data processing by optical means is needed. Many hold the view that progress in optical memories and logic is determined by the availability of new photonic materials. The Phase I feasibility study concentrated on the use of certain II-VI compounds that display unusual optical properties, offering new opportunities of the realization of erasable optical memories, processors and computers. The feasibility of the erasable memory function is well documented. Optical processors and logic functions were also examined and the results to data shown that, with application of larger resources, logic functions can be developed. Much progress has been made in the erasable optical memory area. Clearly, information can be written by a visible light source, which is then retained in the form of the spatial distribution of trapped electrons. It has been demonstrated that both digital and analog information can be stored this way. Reading is accomplished by a gentle infrared beam that partially discharges the traps in the process of reconstructing the information. While each reading reduces the trapped electron density, many readings can be made and the information is easily rewritten. We have found that the material in its thin form has a speed faster than 5 nanoseconds (equipment limited) and the resolution is at least 0.6 micron.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 1986
Accession Number
ADA181566

Entities

People

  • Joseph Lindmayer

Tags

Communities of Interest

  • Advanced Electronics

DTIC Thesaurus Topics

  • Computing Devices
  • Data Storage Systems
  • Electrons
  • Energy Bands
  • Energy Levels
  • Ground State
  • Lasers
  • Optical Correlators
  • Optical Modulators
  • Optical Processing
  • Optical Properties
  • Optical Waveguides
  • Photonic Devices
  • Photonic Integrated Circuits
  • Semiconductors
  • Thick Films
  • Thin Films

Fields of Study

  • Physics

Readers

  • Computer Science/Computer Engineering/Data Science/Digital Signal Processing.
  • Quantum Dot Semiconductor Device Photonics and Graphene Optoelectronic Materials and THz Physics.
  • Systems Analysis and Design

Technology Areas

  • Microelectronics