Frequency-tunable optically pumped carbon monoxide laser

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Abstract

Single-line frequency-tunable lasing was observed in an optically pumped, repetitively pulsed, room-temperature CO laser for the first time. The R(0) and R(7) ro-vibrational transitions in the (2,0) overtone of CO at 2.3 μm were optically pumped with a high-energy optical parametric oscillator. Single-line lasing was observed on (2,1) P(2)-P(17) transitions and R(0)-R(11) transitions (covering wavelengths within the range 4.6-4.9 μm) when using a diffraction grating as the spectrally selective reflector of the laser resonator. The observed CO laser pulse lengths were approx. 10-7 s with peak power up to 104 W. The influence of CO pressure, the addition of buffer gas (He, Ar), Q-factor of the laser resonator, and the pump pulse energy on CO laser pulse temporal characteristics and output energy spectral distribution was studied experimentally.

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McCord, J. E., Ionin, A. A., Phipps, S. P., Crowell, P. G., Lampson, A. I., McIver, J. K., … Hager, G. D. (2000). Frequency-tunable optically pumped carbon monoxide laser. IEEE Journal of Quantum Electronics, 36(9), 1041–1052. https://doi.org/10.1109/3.863956

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