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DEVELOPMENT OF A MULTIPLE WAVELENGTH LASER DIODE (MWLD) IN THE 1.1 TO 1.6 MICRON RANGE

Award Information
Agency: Department of Defense
Branch: Defense Advanced Research Projects Agency
Contract: N/A
Agency Tracking Number: 15247
Amount: $40,028.00
Phase: Phase I
Program: SBIR
Solicitation Topic Code: N/A
Solicitation Number: N/A
Timeline
Solicitation Year: N/A
Award Year: 1991
Award Start Date (Proposal Award Date): N/A
Award End Date (Contract End Date): N/A
Small Business Information
6034 W Courtyard Drive #305 Po Box 162004
Austin, TX 78716
United States
DUNS: N/A
HUBZone Owned: No
Woman Owned: No
Socially and Economically Disadvantaged: No
Principal Investigator
 Paul West
 Principal Investigator
 (818) 795-1163
Business Contact
Phone: () -
Research Institution
N/A
Abstract

THE OBJECTIVE IS TO DEVELOP A MULTIPLE WAVELENGTH LASER DIODE BASED ON QUANTUM WELL TECHNOLOGY. THE DEVICE IS BASED ON GALLIUM INDIUM ARSENIC PHOSPHIDE ON AN INDIUM PHOSPHIDE SUBSTRATE. THE MATERIAL COMPOSITION IS TO BE DETERMINED ACCORDING TO THE FORMULA OF 1-X AND 1-Y FOR ALL VALUES OF X AND Y LESS THAN 1.0. THE OBJECTIVE IS TO IDENTIFY MATERIALS WHICH WILL PRODUCE SPECIFIC OUTPUT WAVELENGTHS BETWEEN 1.1 AND 1.6 MICRONS. A DEVICE GEOMETRY WILL BE DEVELOPED USING MULTIPLE QUANTUM WELLS WHICH WILL PROVIDE A SPECIFIC OUTPUT WAVELENGTH CORRESPONDING TO A SPECIFIC ELECTRICAL SIGNAL INPUT. IN PHASE I THE MATERIALS WILL BE SPECIFIED, THE DEVICE GEOMETRY AND ARCHITECTURE DEVELOPED, AND A MANUFACTURING TECHNOLOGY/METHODOLOGY ESTABLISHED. ANTICIPATED BENEFITS/POTENTIAL COMMERCIAL APPLICATIONS - THE BENEFIT IS SIGNIFICANTLY INCREASED DATA RATES AND INCREASED CAPACITY OF EACH OPTICAL FIBER PAIR. THE COMMERCIAL APPLICATIONS ARE IN HIGH SPEED TELECOMMUNICATIONS AND DATA COMMUNICATIONS APPLICATIONS.

* Information listed above is at the time of submission. *

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