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Ultraminiature high-power gas discharge lasers
1National Physical Research Laboratory, Council for Sicentific and Industrial Research, P. O. Box 395, Pretoria, South Africa.
The Review of Scientific Instruments
|January 1, 1979
Summary
Researchers developed small, powerful ultraviolet nitrogen lasers that operate at atmospheric pressure. These sealed lasers achieve high peak powers and are adaptable for other laser systems.
Area of Science:
- Optics and Photonics
- Laser Physics
- Gas Discharge Physics
Background:
- Development of compact, high-power laser systems is crucial for various scientific and industrial applications.
- Atmospheric pressure operation simplifies laser design and reduces operational complexity.
- Photopreionization stabilization is a key technique for achieving stable discharges in high-pressure gases.
Purpose of the Study:
- To develop millimeter-size, photopreionization-stabilized ultraviolet nitrogen lasers operating at atmospheric pressure.
- To characterize the performance of sealed-off versions of these lasers in terms of power output.
- To demonstrate the general applicability of the discharge and pulsing concepts to other laser systems.
Main Methods:
- Utilized photopreionization to stabilize electrical discharges in nitrogen gas at atmospheric pressure.
- Designed and constructed millimeter-size laser cavities.
- Developed sealed-off laser configurations to assess long-term operational stability and power output.
- Investigated transverse electric (TE) discharge and pulsing techniques.
Main Results:
- Successfully developed millimeter-size ultraviolet nitrogen lasers.
- Achieved peak powers ranging from 30-150 kW in sealed-off configurations.
- Obtained average power outputs of 1-5 mW.
- Demonstrated the versatility of the discharge and pulsing methods for other high-pressure laser types.
Conclusions:
- Millimeter-size, photopreionization-stabilized atmospheric pressure UV nitrogen lasers are feasible and offer significant power.
- Sealed-off versions provide practical, high-peak-power sources.
- The underlying discharge and pulsing technologies are broadly applicable to advanced high-pressure laser development.

