SBIR-STTR Award

Optimization of Strain Balanced Heterostructures for High Power 4-5 Micron Quantum Cascade Lasers
Award last edited on: 11/6/2007

Sponsored Program
STTR
Awarding Agency
DOD : Army
Total Award Amount
$850,000
Award Phase
2
Solicitation Topic Code
A04-T012
Principal Investigator
Michael J Freeman

Company Information

Omni Sciences Inc

9477 North Territorial Road Suite 120
Dexter, MI 48130
   (734) 424-9350
   omnigeneral@omnisciinc.com
   www.omnisciinc.com

Research Institution

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Phase I

Contract Number: ----------
Start Date: ----    Completed: ----
Phase I year
2004
Phase I Amount
$100,000
Spectral fingerprinting for chemical agent detection or industrial process and analytic chemistry requires a compact, lightweight, tunable mid-infrared (mid-IR) laser. A room temperature, fiber-based mid-IR laser is proposed that starts with a pump laser in the near-IR, and then down-shifts the light based on cascaded Raman wavelength shifting in mid-IR fibers. The laser is widely tunable by simply tuning a seed semiconductor laser, and the power can be scaled up to watts by using larger core size fibers. The mid-IR laser leverages the mature technology base from telecommunications, where our team has considerable experience on Raman technology. We use simulation codes carefully tested in near-IR wavelengths to design the proposed mid-IR lasers, and we show that the Raman wavelength shifting process is extremely efficient. New technical challenges arise from using mid-IR fibers based on chalcogenides or fluorides, but these should be engineering challenges rather than fundamental limitations. The Phase I project has three main objectives. First, prove the accuracy of the simulations and better understand the properties of the mid-IR fibers. Second, demonstrate experimentally cascaded Raman wavelength shifting in the mid-IR fibers. Finally, generate light in the 3-5 micron wavelength range using off-the-shelf telecom technologies and mid-IR fibers

Phase II

Contract Number: ----------
Start Date: ----    Completed: ----
Phase II year
2006
Phase II Amount
$750,000
Chemical sensing requires a compact, room temperature laser operating over the mid-IR. Omni Sciences, Inc.ís (OSIís) Mid-Infra-Red FIber Laser (MIRFIL) will generate continuous light over 1 to 5 microns with an average output >1W. OSI has demonstrated a

Keywords:
Mid-Infrared Lasers, Optical Fibers, Super-Continuum, Nonlinear Optics, Spectral Fingerprinting, Las