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Applied Optics

Applied Optics

APPLICATIONS-CENTERED RESEARCH IN OPTICS

  • Vol. 29, Iss. 12 — Apr. 20, 1990
  • pp: 1716–1718

Tunable single-longitudinal-mode diode laser pumped Tm:Ho:YAG laser

Sammy W. Henderson and Charley P. Hale  »View Author Affiliations


Applied Optics, Vol. 29, Issue 12, pp. 1716-1718 (1990)
http://dx.doi.org/10.1364/AO.29.001716


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Abstract

Continuous wave single-longitudinal-mode power of 58 mW and frequency tuning of ~1 THz has been obtained near 2.1 μm using a diode laser pumped thermoelectrically cooled Tm:Ho:YAG laser.

© 1990 Optical Society of America

History
Original Manuscript: October 2, 1989
Published: April 20, 1990

Citation
Sammy W. Henderson and Charley P. Hale, "Tunable single-longitudinal-mode diode laser pumped Tm:Ho:YAG laser," Appl. Opt. 29, 1716-1718 (1990)
http://www.opticsinfobase.org/ao/abstract.cfm?URI=ao-29-12-1716


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References

  1. G. Huber, E. W. Duczynski, K. Petermann, “Laser Pumping of Ho-, Tm-, Er-Doped Garnet Lasers at Room Temperature,” IEEE J. Quantum Electron. QE-24, 920–923 (1988). [CrossRef]
  2. T. Y. Fan, G. Huber, R. L. Byer, P. Mitzscherlich, “Continuous-Wave Operation at 2.1 μm of a Diode-Laser-Pumped, Tm-Sensitized Ho:Y3Al5O12 Laser at 300 K,” Opt. Lett. 12, 678–680 (1987). [CrossRef] [PubMed]
  3. T. Y. Fan, G. Huber, R. L. Byer, P. Mitzscherlich, “Spectroscopy and Diode Laser-Pumped Operation of Tm,Ho:YAG,” IEEE J. Quantum Electron. QE-24, 924–933 (1988). [CrossRef]
  4. G. J. Kintz, R. Allen, L. Esterowitz, “Continuous-WaveLaser Emission at 2.02 μm from Diode-Pumped Tm3+:YAG at Room Temperature,” in Technical Digest, Conference on Lasers and Electro-Optics (Optical Society of America, Washington, DC, 1988), paper FB2.
  5. T. J. Kane, R. W. Wallace, “Performance of a Diode-Pumped Tm:Ho:YAG Laser at Temperatures Between −55 and +20°C,” in Technical Digest, Conference on Lasers and Electro-Optics (Optical Society of America, Washington, DC, 1988), paper FB3.
  6. T. Y. Fan, R. L. Byer, “Modeling and CW Operation of a Quasi-Three-Level 946 nm Nd:YAG Laser,” IEEE J. Quantum Electron. QE-23, 605–612 (1987).
  7. W. P. Risk, “Modeling of Longitudinally Pumped Solid-State Lasers Exhibiting Reabsorption Losses,” J. Opt. Soc. Am. B 5, 1412 (1988). [CrossRef]

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