Compact, High Power, Multi-Spectral Mid-Infrared Semiconductor Laser Package

Abstract

Through a vertically integrated effort involving atomic level material engineering, advanced device processing development, state-of-the-art optomechanical packaging, and thermal management, Applied Optoelectronics, Inc. (AOI), University of Houston (U H), and Physical Science, Inc. (PSI) have made progress in both Sb-based type-II semiconductor material and in P-based type-I laser device development. We have achieved record performance on inP based quantum cascade continuous wave (CW) laser (with more than 5 mW CW power at 210 K). Grating-coupled external-cavity quantum cascade lasers were studied for temperatures from 20 to 230 K. A tuning range of 88 nm has been obtained at 80 K. The technology can be made commercially available and represents a significant milestone with regard to the Dual Use Science and Technology (DUST) intention of fostering dual use commercial technology for defense need. AOI is the first commercial company to ship products of this licensed technology.

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Document Details

Document Type
Technical Report
Publication Date
Oct 01, 2001
Accession Number
ADA408878

Entities

People

  • Bujin Guo
  • Chich-hsiang Lin
  • Wen-yen Hwang

Tags

Communities of Interest

  • Advanced Electronics
  • Energy and Power Technologies
  • Ground and Sea Platforms

DTIC Thesaurus Topics

  • Antireflection Coatings
  • Distributed Feedback Lasers
  • Electronics Industry
  • Electronics Laboratories
  • Laser Beams
  • Laser Diodes
  • Laser Science
  • Lasers
  • Light (Electromagnetic Radiation)
  • Modules (Electronics)
  • Optoelectronics
  • Quantum Cascade Lasers
  • Quantum Efficiency
  • Quantum Well Lasers
  • Quantum Wells
  • Semiconductor Lasers
  • Semiconductors

Fields of Study

  • Materials science

Readers

  • Optical Physics and Photonics.
  • Quantum Dot Semiconductor Device Photonics and Graphene Optoelectronic Materials and THz Physics.
  • Research Science/Academic Research

Technology Areas

  • Directed Energy
  • Microelectronics
  • Quantum Computing