Theoretical and experimental investigation of actively Q-switched Tm,Ho:YLF lasers
Optics Express, Vol. 14, Issue 17, pp. 7745-7750 (2006)
http://dx.doi.org/10.1364/OE.14.007745
Acrobat PDF (102 KB)
Abstract
The quasi-three-level rate equation of continuous wave end-pumped actively Q-switched Tm,Ho:YLF laser is given under considering energy transfer up-conversion and ground state re-absorption. The analytical formula of the pulse energy is derived. The theoretical results show that the overall laser performance is affected by up-conversion effect, and the energy transfer up-conversion effect reduces the pulse energy and the upper level effective lifetime. The practical example of the diode end-pumped actively Q-switched Tm,Ho:YLF is used to verify the present model.
© 2006 Optical Society of America
1. Introduction
S. W. Henderson, P. J. M. Suni, C. P. Hale, S. M. Hannon, J. R. Magee, D. L. Bruns, and E. H. Yuen, “Coherent laser radar at 2μm using solid-state lasers, ” IEEE Trans. Geoscience and Remote Sensing. 31, 4–15 (1993). [CrossRef]
J. Yu, B. C. Trieu, E. A. Modin, U. P. Singh, M. J. Kavaya, S. Chen, Y. Bai, P. J. Petzar, and M. Petros, “1J/pulse Q-switched 2μm solid-state laser, ” Opt. Lett. 31, 462–464 (2006). [CrossRef] [PubMed]
G. Galzerano, E. Sani, A. Toncelli, G.Della Valle, S. Taccheo, M. Tonelli, and P. Laporta, “Widely tunable continuous-wave diode-pumped 2-μm Tm-Ho:KYF4 laser, ” Opt. Lett. 29, 715–717 (2004). [CrossRef] [PubMed]
V. Sudesh and K. Asai, “Spectroscopic and diode-pumped-laser properties of Tm,Ho:YLF; Tm,Ho:LuLF; and Tm,Ho:LuAG crystals: A comparative study, ” J. Opt. Soc. Am. B. 20, 1829–1837 (2003). [CrossRef]
B. T. Mcguckin, R. T. Menzies, and H. Hemmati, “Efficient energy extraction from a diode-pumped Q-switched Tm,Ho:YLiF4 laser, ” Appl. Phys. Lett. 59, 2926–2928 (1991). [CrossRef]
2. Rate equation theory
G. L. Bourdet and G. Lescroart, “Theoretical modeling and design of a Tm,Ho:YliF4 microchip laser, ” Appl. Opt. 38, 3275–3281 (1999). [CrossRef]
R. Gunnar and S. Knut, “Modeling of laser-pumped Tm and Ho lasers accounting for up-conversion and ground-state depletion, ” IEEE J. Quantum Electron. 32, 1645–1655 (1996). [CrossRef]
X. Zhang, Y. Ju, and Y. Wang, “Diode-end-pumped room temperature Tm,Ho:YLF lasers,” Opt. Express 13, 4056–4063 (2005). [CrossRef] [PubMed]
Y. F. Chen, Y. P. Lan, and S. C. Wang, “Modeling of diode-end-pumped Q-switched solid-state lasers: influence of energy-transfer upconversion, ” J. Opt. Soc. Am. B. 19, 1558–1563 (2002). [CrossRef]
Y. P. Lan, Y. F. Chen, and S. C. Wang, “Repetition-rate dependence of thermal loading in diode-end-pumped Q-switched laser: influence of energy-transfer upconversion, ” Appl. Phys. B 71, 27–31 (2000). [CrossRef]
Y. F. Chen, Y. P. Lan, and S. C. Wang, “Modeling of diode-end-pumped Q-switched solid-state lasers: influence of energy-transfer upconversion, ” J. Opt. Soc. Am. B. 19, 1558–1563 (2002). [CrossRef]
Y. P. Lan, Y. F. Chen, and S. C. Wang, “Repetition-rate dependence of thermal loading in diode-end-pumped Q-switched laser: influence of energy-transfer upconversion, ” Appl. Phys. B 71, 27–31 (2000). [CrossRef]
G. L. Bourdet and G. Lescroart, “Theoretical modeling and design of a Tm,Ho:YliF4 microchip laser, ” Appl. Opt. 38, 3275–3281 (1999). [CrossRef]
G. L. Bourdet and G. Lescroart, “Theoretical modeling and design of a Tm,Ho:YliF4 microchip laser, ” Appl. Opt. 38, 3275–3281 (1999). [CrossRef]
G. L. Bourdet and G. Lescroart, “Theoretical modeling and design of a Tm,Ho:YliF4 microchip laser, ” Appl. Opt. 38, 3275–3281 (1999). [CrossRef]
R. Gunnar and S. Knut, “Modeling of laser-pumped Tm and Ho lasers accounting for up-conversion and ground-state depletion, ” IEEE J. Quantum Electron. 32, 1645–1655 (1996). [CrossRef]
2. Experiments and results
G. L. Bourdet and G. Lescroart, “Theoretical modeling and design of a Tm,Ho:YliF4 microchip laser, ” Appl. Opt. 38, 3275–3281 (1999). [CrossRef]
G. L. Bourdet and G. Lescroart, “Theoretical modeling and design of a Tm,Ho:YliF4 microchip laser, ” Appl. Opt. 38, 3275–3281 (1999). [CrossRef]
G. L. Bourdet and G. Lescroart, “Theoretical modeling and design of a Tm,Ho:YliF4 microchip laser, ” Appl. Opt. 38, 3275–3281 (1999). [CrossRef]
R. Gunnar and S. Knut, “Modeling of laser-pumped Tm and Ho lasers accounting for up-conversion and ground-state depletion, ” IEEE J. Quantum Electron. 32, 1645–1655 (1996). [CrossRef]
3. Conclusion
References and links
P. J. M. Paul and S. W. Henderson, “1-mJ/pulse Tm:YAG laser pumped by a 3-W diode laser, ” Opt. Lett. 16, 317–319 (1991). | |
S. W. Henderson, P. J. M. Suni, C. P. Hale, S. M. Hannon, J. R. Magee, D. L. Bruns, and E. H. Yuen, “Coherent laser radar at 2μm using solid-state lasers, ” IEEE Trans. Geoscience and Remote Sensing. 31, 4–15 (1993). [CrossRef] | |
J. Yu, B. C. Trieu, E. A. Modin, U. P. Singh, M. J. Kavaya, S. Chen, Y. Bai, P. J. Petzar, and M. Petros, “1J/pulse Q-switched 2μm solid-state laser, ” Opt. Lett. 31, 462–464 (2006). [CrossRef] [PubMed] | |
G. L. Bourdet and G. Lescroart, “Theoretical modeling and design of a Tm,Ho:YliF4 microchip laser, ” Appl. Opt. 38, 3275–3281 (1999). [CrossRef] | |
R. Gunnar and S. Knut, “Modeling of laser-pumped Tm and Ho lasers accounting for up-conversion and ground-state depletion, ” IEEE J. Quantum Electron. 32, 1645–1655 (1996). [CrossRef] | |
G. Galzerano, E. Sani, A. Toncelli, G.Della Valle, S. Taccheo, M. Tonelli, and P. Laporta, “Widely tunable continuous-wave diode-pumped 2-μm Tm-Ho:KYF4 laser, ” Opt. Lett. 29, 715–717 (2004). [CrossRef] [PubMed] | |
V. Sudesh and K. Asai, “Spectroscopic and diode-pumped-laser properties of Tm,Ho:YLF; Tm,Ho:LuLF; and Tm,Ho:LuAG crystals: A comparative study, ” J. Opt. Soc. Am. B. 20, 1829–1837 (2003). [CrossRef] | |
B. T. Mcguckin, R. T. Menzies, and H. Hemmati, “Efficient energy extraction from a diode-pumped Q-switched Tm,Ho:YLiF4 laser, ” Appl. Phys. Lett. 59, 2926–2928 (1991). [CrossRef] | |
Y. Wang, X. Zhang, and B. Yao, “Performance of a liquid-nitrogen-cooled CW Tm,Ho:YLF laser, ” Chin. Opt. Lett. 1, 281–282 (2003) | |
X. Zhang, Y. Wang, B. Yao, and L. Dong, “Performance of end-pumped Tm,Ho:YLF microchip laser, ” Chin. J. Lasers. 31, 9–12 (2004). | |
X. Zhang, Y. Ju, and Y. Wang, “Diode-end-pumped room temperature Tm,Ho:YLF lasers,” Opt. Express 13, 4056–4063 (2005). [CrossRef] [PubMed] | |
X. Zhang, Y. Wang, and B. Yao, “Study of LD end-pumped Tm,Ho:YLF laser, ” Acta Opt. Sin. . 24, 88–93 (2004). | |
X. Zhang, Y. Wang, and Y. Ju, “Influence of energy-transfer up-conversion on Tm,Ho:YLF laser threshold, ” Acta Phys. Sin. 54, 117–122 (2005). | |
Y. F. Chen, Y. P. Lan, and S. C. Wang, “Modeling of diode-end-pumped Q-switched solid-state lasers: influence of energy-transfer upconversion, ” J. Opt. Soc. Am. B. 19, 1558–1563 (2002). [CrossRef] | |
Y. P. Lan, Y. F. Chen, and S. C. Wang, “Repetition-rate dependence of thermal loading in diode-end-pumped Q-switched laser: influence of energy-transfer upconversion, ” Appl. Phys. B 71, 27–31 (2000). [CrossRef] | |
W. Koechner, Solid-State Laser Engineering (Springer, Berlin, 1976). |
OCIS Codes
(140.3430) Lasers and laser optics : Laser theory
(140.3480) Lasers and laser optics : Lasers, diode-pumped
(140.3540) Lasers and laser optics : Lasers, Q-switched
(140.3580) Lasers and laser optics : Lasers, solid-state
ToC Category:
Lasers and Laser Optics
History
Original Manuscript: June 12, 2006
Revised Manuscript: July 19, 2006
Manuscript Accepted: July 20, 2006
Published: August 21, 2006
Citation
Xinlu Zhang, Youlun Ju, and Yuezhu Wang, "Theoretical and experimental investigation of actively Q-switched Tm,Ho:YLF lasers," Opt. Express 14, 7745-7750 (2006)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-14-17-7745
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References
- P. J. M. Paul and S. W. Henderson, "1-mJ/pulse Tm:YAG laser pumped by a 3-W diode laser," Opt. Lett. 16, 317-319 (1991).
- S. W. Henderson, P. J. M. Suni, C. P. Hale, S. M. Hannon, J. R. Magee, D. L. Bruns, and E. H. Yuen, "Coherent laser radar at 2µm using solid-state lasers," IEEE Trans. Geoscience and Remote Sensing. 31, 4-15 (1993). [CrossRef]
- J. Yu, B. C. Trieu, E. A. Modin, U. P. Singh, M. J. Kavaya, S. Chen, Y. Bai, P. J. Petzar, and M. Petros, "1J/pulse Q-switched 2µm solid-state laser," Opt. Lett. 31, 462-464 (2006). [CrossRef] [PubMed]
- G. L. Bourdet and G. Lescroart, "Theoretical modeling and design of a Tm,Ho:YliF4 microchip laser," Appl. Opt. 38, 3275-3281 (1999). [CrossRef]
- R. Gunnar and S. Knut, "Modeling of laser-pumped Tm and Ho lasers accounting for up-conversion and ground-state depletion," IEEE J. Quantum Electron. 32, 1645-1655 (1996). [CrossRef]
- G. Galzerano, E. Sani, A. Toncelli, G. Della Valle, S. Taccheo, M. Tonelli, and P. Laporta, "Widely tunable continuous-wave diode-pumped 2-?m Tm-Ho:KYF4 laser," Opt. Lett. 29, 715-717 (2004). [CrossRef] [PubMed]
- V. Sudesh and K. Asai, "Spectroscopic and diode-pumped-laser properties of Tm,Ho:YLF; Tm,Ho:LuLF; and Tm,Ho:LuAG crystals: A comparative study," J. Opt. Soc. Am. B. 20, 1829-1837 (2003). [CrossRef]
- B. T. Mcguckin, R. T. Menzies, and H. Hemmati, "Efficient energy extraction from a diode-pumped Q-switched Tm,Ho:YLiF4 laser," Appl. Phys. Lett. 59, 2926-2928 (1991). [CrossRef]
- Y. Wang, X. Zhang, and B. Yao, "Performance of a liquid-nitrogen-cooled CW Tm,Ho:YLF laser," Chin. Opt. Lett. 1, 281-282 (2003).
- X. Zhang, Y. Wang, B. Yao, and L. Dong, "Performance of end-pumped Tm,Ho:YLF microchip laser," Chin. J. Lasers. 31, 9-12 (2004).
- X. Zhang, Y. Ju, and Y. Wang, "Diode-end-pumped room temperature Tm,Ho:YLF lasers," Opt. Express 13, 4056-4063 (2005). [CrossRef] [PubMed]
- X. Zhang, Y. Wang, and B. Yao, "Study of LD end-pumped Tm,Ho:YLF laser," Acta Opt. Sin. 24, 88-93 (2004).
- X. Zhang, Y. Wang, and Y. Ju, "Influence of energy-transfer up-conversion on Tm,Ho:YLF laser threshold," Acta Phys. Sin. 54, 117-122 (2005).
- Y. F. Chen, Y. P. Lan, and S. C. Wang, "Modeling of diode-end-pumped Q-switched solid-state lasers: influence of energy-transfer upconversion," J. Opt. Soc. Am. B. 19, 1558-1563 (2002). [CrossRef]
- Y. P. Lan, Y. F. Chen, and S. C. Wang, "Repetition-rate dependence of thermal loading in diode-end-pumped Q-switched laser: influence of energy-transfer upconversion," Appl. Phys. B 71, 27-31 (2000). [CrossRef]
- W. Koechner, Solid-State Laser Engineering (Springer, Berlin, 1976).
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