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Frequency stability limitations of optically pumped lasers due to pump laser instability through dispersion effect

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Bibliography

  1. C. O. W-upeiss and G. K-upramer: “Optically Pumped Far Infrared laser for infrared frequency measurements”, Proc. AMCO 5 Ed. J. H. Sanders and A. H. Wapstra, Plenum Press 1976.

  2. A. C-uplairon, B. D-upahmani and J. R-uputman: Accurate Absolute frequency measurement on Stabilized CO2 and He Ne lasers IEEE Trans. on Instr. and Meas. Vol. IM 29, no 3, sept. 1980.

  3. B. D-upahmani and A. C-uplairon, Optically pumped FIR Lasers Phase locked by Stark Effect Applied to precise Optical Frequency Measurements. IEEE Vol. IM 32, no 1, March 1983.

  4. P. P-uplainchamp: “Frequency instability measurements of the CH3OH optically pumped laser at 70.5 μm and 118 μm”, IEEE Journal of Quantum Electronics, QE 15, no 9, 860–864 sept. 1979.

  5. A. G-upodone, C. O. W-upeiss and G. K-upramer : “FM-Noise Measurements of an Optically Pumped FIR Laser”, IEEE Journal of Quantum Electronics, Vol. QE 14, no 5, May 1978.

  6. M. I-upnguscio, A. M-uporetti and F. S-uptrumia : “IR-FIR Transfered Lamb Dip Spectroscopy in Optically Pumped Molecular Lasers”, Optic Comm. Vol. 30, no 3, sept. 1979.

  7. C. F-upreed, A. J-upavan : “Standing wave saturation resonances in the CO2 10. 6 μm transitions in a low pressure room temperature absorber gas”. Appl. Phys. Lett., Vol. 17, no 2, p. 53–56.

  8. B. D-upahmani: “Effet Stark dans les lasers submillimétriques à pompage optique”, Thèse de 3ème cycle, Université Paris VI, 1981.

  9. M. S. F-upeld, A. J-upavan : “Laser Induced Line Narrowing Effects in Coupled Doppler Broadened Transitions”, Physical Review, Vol. 177, no 2, janv. 1969.

  10. R. L. P-upanock and R. J. T-upemkin : “Interaction of two laser fields with a three level molecular system”, IEEE Journal of Q. E., Vol. QE 13, no 6, june 1977.

  11. J. H-upeppner, C. O. W-upeiss, U. H-upubner and G. S-upchinn: “Gain in CW Laser Pumped FIR Laser Gases”. IEEE Journal of Quantum Electronics, Vol. QE 16, no 4, April 1980.

  12. D. S-upelingson, M. D-upucloy, J. R. R. L-upeite, A. S-upanchez and M. S. F-upeld : “Quantum Mechanical Features of Optically Pumped CW FIR Lasers”.

  13. A. Y-upariv : “Quantum Electronics”, J. Wiley 1975.

  14. C. R. P-upidgeon, W. J. F-upirth, R. A. W-upood, A. V-upass and B. W. D-upadis. Two photon light shift and Autler Townes splittering in optically pumped FIR lasers, International Journal of Infrared and millimeter waves. Vol. 2 no 2, 1981.

  15. A. VASS, B. W. DAVIS, W. J. FIRTH and C. R. PIDGEON. Dispersion in a CW Optically Pumped FIR Laser, Applied Phys. B 29, 131–134 (1982).

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Dahmai, B., Clairon, A. Frequency stability limitations of optically pumped lasers due to pump laser instability through dispersion effect. Int J Infrared Milli Waves 5, 1053–1068 (1984). https://doi.org/10.1007/BF01009593

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