Laser for high frequency modulated interferometry

Coherent light generators – Particular beam control device – Modulation

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372 4, 372 29, 372 20, H01S 310

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050349520

ABSTRACT:
A Stark-tuned laser operating in the 119 micron line of CH.sub.3 OH has an output power of several tens of milliwatts at 30 Watts of pump power while exhibiting a doublet splitting of about ten MHz with the application of a Stark field on the order of 500 volts/cm. This output power allows for use of the laser in a multi-channel interferometer, while its high operating frequency permits the interferometer to measure rapid electron density changes in a pellet injected or otherwise fueled plasma such as encountered in magnetic fusion devices. The laser includes a long far-infrared (FIR) pyrex resonator tube disposed within a cylindrical water jacket and incorporating charged electrodes for applying the Stark field to a gas confined therein. With the electrodes located within the resonator tube, the resonator tube walls are cooled by a flowing coolant without electrical breakdown in the coolant liquid during application of the Stark field. Wall cooling allows for substantially increased FIR output powers. Provision is made for introducing a buffer gas into the resonator tube for increasing laser output power and its operating bandwidth.

REFERENCES:
patent: 3842367 (1974-10-01), Schlossberg
patent: 3921099 (1975-11-01), Abrams et al.
Design of Molecular Fir Lasers Frequency Tunable by Stark Effect: Electric Breakdown of CH.sub.3 OH, CH.sub.3 F, CH.sub.3 I and CH.sub.3 CN/Bionducci et al., Infrared Physics, 1979, pp. 297-308.
Multichannel Far-Infrared Laser Interferometer for Electron Density Measurements on the Tokamak Fusion Test Reactor / Mansfield et al., Applied Optics, vol. 26, pp. 4469-4474, Oct. 15, 1987.

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