SBIR-STTR Award

Advanced Iii-Nitride-Based Structures For High-Performance Ultraviolet LasersLASERS
Award last edited on: 4/9/2007

Sponsored Program
SBIR
Awarding Agency
DOD : DARPA
Total Award Amount
$95,000
Award Phase
1
Solicitation Topic Code
SB022-043
Principal Investigator
Russell D Dupuis

Company Information

Magellus Corporation

1406 Camp Craft Road Suite 80
Austin, TX 78746
   (512) 899-8539
   neschumaker@for-e-tel.com
   N/A
Location: Single
Congr. District: 25
County: Travis

Phase I

Contract Number: ----------
Start Date: ----    Completed: ----
Phase I year
2003
Phase I Amount
$95,000
This proposal addresses the development of practical designs for semiconductor injection lasers fabricated from III-V nitride materials operating in the ultraviolet spectral regions with potential for high efficiency operation for use in chemical and biological warfare agent sensor and secure communication system applications. Many biological molecules of interest fluoresce in the UV spectral region and can be detected by using a laser-induced fluorescence (LIF) technique. LIF typically employs illumination of the bio-molecules of interest with a high-intensity UV photon pulse in the 260-290 nm spectral range that causes the bioagent to fluoresce in the l~300-400 nm wavelength regime. Furthermore, UV emitters in the 280nm spectral range can be used as sources in secure communications systems to be developed for a variety of applications. The major tasks of this program involve the analysis and modeling of InAlGaN/GaN heterojunction structures and the development of improved injection laser devices operating in the UV. We propose to design (Phase I) and produce (Phase II) small, efficient UV sources for these important systems. This work is closely synergistic with the existing DARPA-sponsored UV emitter work being carried out in Dupuis? Group at UT-Austin under the SUVOS program. Improvements in the performance of nitride-based optoelectronic devices, especially injection lasers, will have a immediate broad impact in many important defense and commercial applications, including medical applications, biochemical identification and detection, secure communication systems, gas and liquid purification systems, ultra light-weight UV sources for space-based optical communications, and high-efficiency illumination. All of these applications can be developed in the future based upon the work described in this proposal

Keywords:
Injection Laser, Mocvd, Quantum Well, Inalgan

Phase II

Contract Number: ----------
Start Date: ----    Completed: ----
Phase II year
----
Phase II Amount
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