1.5-µm-band thulium-doped microsphere laser originating from self-terminating transition
Optics Express, Vol. 13, Issue 25, pp. 10129-10133 (2005)
http://dx.doi.org/10.1364/OPEX.13.010129
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Abstract
Continuous-wave 1.5-μm-band laser is demonstrated in thulium doped tellurite glass microsphere by single laser pumping. 1.9-μm laser from the lower transition (3F4→3H6) of Tm3+ is generated to depopulate the lower level (3F4) of 1.5-μm transition (3H4→3F4) in order to achieve the population inversion. Laser wavelength of 3H4→3F4 transition is shifted by 30 nm from the emission peak. Slope efficiency of 1.9-μm laser is improved after the1.5-μm laser starts to lase.
© 2005 Optical Society of America
1. Introduction
R.C. Stoneman and L. Esterowitz , “ Continuous-wave 1.50-Mum thulium cascade laser ,” Opt. Lett. 16 , 232 ( 1991 ). [CrossRef] [PubMed]
T. Kasamatsu , Y. Yano , and T. Ono , “ Gain-shifted dual-wavelength-pumped thulium-doped fiber amplifier for WDM signals in the 1.48-1.51 mm ,” IEEE Photon. Technol. Lett. 13 , 31 ( 2001 ). [CrossRef]
2. Experiment
X. Peng , F. Song , S. Jiang , N. Peyghambarian , M. Kuwata-Gonokami , and L. Xu , “ Fiber-taper-coupled L-band Er 3+ -doped tellurite glass microsphere laser ,” Appl. Phys. Lett. 82 , 1497 ( 2003 ). [CrossRef]
3. Lasing condition on self-terminating transition
R.S. Quimby and W.J. Miniscalso , “ Continuous-wave lasing on a self-terminating transition ,” Appl. Opt. 28 , 14 , ( 1989 ). [CrossRef] [PubMed]
R.M Allen , L. Esterowitz , and I. Aggarwal , “ An efficient 1.46μm thulium fiber laser via a cascade process ,” IEEE J. Quantum Electron. 29 , 303 , ( 1993 ). [CrossRef]
4. Results and discussion
5. Conclusion
Acknowledgments
References
R.C. Stoneman and L. Esterowitz , “ Continuous-wave 1.50-Mum thulium cascade laser ,” Opt. Lett. 16 , 232 ( 1991 ). [CrossRef] [PubMed] | |
G.H. Rosenblatt , R.J. Ginther , R.C. Stoneman , and L. Esterowitz , Advanced Solid state Lasers, “ Laser emission at 1.47 μm from fluorozirconate glass doped with Tm 3+ and Tb 3+ ,” Proceedings of the OSA Topical Meeting (5 vols), 1988 , p 373 . | |
S. Tanabe , X. Feng , and T. Hanada , “ Improved emission of Tm 3+ -doped glass for a 1.4-μm amplifier by radiative energy transfer between Tm 3+ and Nd 3+ ,” Opt. Lett. 25 , 817 ( 2000 ). [CrossRef] | |
T. Kasamatsu , Y. Yano , and T. Ono , “ Gain-shifted dual-wavelength-pumped thulium-doped fiber amplifier for WDM signals in the 1.48-1.51 mm ,” IEEE Photon. Technol. Lett. 13 , 31 ( 2001 ). [CrossRef] | |
Jianfeng Wu , Shibin Jiang , Tiequn Qiu , and N. Peyghambarian , “ Cross relaxation energy transfer of thuliumin tellurite glass ” Submitted to J. Opt. Soc. Am. B . | |
X. Peng , F. Song , S. Jiang , N. Peyghambarian , M. Kuwata-Gonokami , and L. Xu , “ Fiber-taper-coupled L-band Er 3+ -doped tellurite glass microsphere laser ,” Appl. Phys. Lett. 82 , 1497 ( 2003 ). [CrossRef] | |
R.S. Quimby and W.J. Miniscalso , “ Continuous-wave lasing on a self-terminating transition ,” Appl. Opt. 28 , 14 , ( 1989 ). [CrossRef] [PubMed] | |
R.M Allen , L. Esterowitz , and I. Aggarwal , “ An efficient 1.46μm thulium fiber laser via a cascade process ,” IEEE J. Quantum Electron. 29 , 303 , ( 1993 ). [CrossRef] | |
R.M. Percival , D. Szebesta , and S.T. Davey , “ Highly efficient CW cascade operation of 1.47 and 1.82 mm transitions in Tm-doped fluoride fiber laser ,” Electron. Lett. 28 , 1866 ( 1992 ). [CrossRef] |
OCIS Codes
(140.4780) Lasers and laser optics : Optical resonators
(140.5680) Lasers and laser optics : Rare earth and transition metal solid-state lasers
(160.5690) Materials : Rare-earth-doped materials
ToC Category:
Research Papers
Citation
Jianfeng Wu, Shibin Jiang, and N. Peyghambarian, "1.5-µm-band thulium-doped microsphere laser originating from self-terminating transition," Opt. Express 13, 10129-10133 (2005)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-13-25-10129
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References
- R.C. Stoneman and L. Esterowitz, "Continuous-wave 1.50-Mum thulium cascade laser," Opt. Lett. 16, 232 (1991). [CrossRef] [PubMed]
- G.H. Rosenblatt, R.J. Ginther, R.C. Stoneman , and L. Esterowitz, Advanced Solid state Lasers, "Laser emission at 1.47 µm from fluorozirconate glass doped with Tm3+ and Tb3+," Proceedings of the OSA Topical Meeting (5 vols), 1988, p 373.
- S. Tanabe, X. Feng, and T. Hanada, "Improved emission of Tm3+-doped glass for a 1.4-µm amplifier by radiative energy transfer between Tm3+ and Nd3+," Opt. Lett. 25, 817 (2000) [CrossRef]
- T. Kasamatsu, Y. Yano, and T. Ono, "Gain-shifted dual-wavelength-pumped thulium-doped fiber amplifier for WDM signals in the 1.48-1.51 mm," IEEE Photon. Technol. Lett. 13, 31 (2001). [CrossRef]
- Jianfeng Wu, Shibin Jiang, Tiequn Qiu, and N. Peyghambarian, "Cross relaxation energy transfer of thulium in tellurite glass" Submitted to J. Opt. Soc. Am. B.
- X.Peng, F.Song, S.Jiang, N.Peyghambarian, M.Kuwata-Gonokami, and L.Xu, "Fiber-taper-coupled L-band Er3+-doped tellurite glass microsphere laser," Appl. Phys. Lett. 82, 1497 (2003). [CrossRef]
- R.S. Quimby and W.J. Miniscalso, "Continuous-wave lasing on a self-terminating transition," Appl. Opt. 28, 14, (1989). [CrossRef] [PubMed]
- R. Allen, L. Esterowitz, and I. Aggarwal, "An efficient 1.46µm thulium fiber laser via a cascade process," IEEE J. Quantum Electron. 29, 303, (1993). [CrossRef]
- R.M. Percival, D. Szebesta, and S.T. Davey, "Highly efficient CW cascade operation of 1.47 and 1.82 mm transitions in Tm-doped fluoride fiber laser," Electron. Lett. 28, 1866 (1992). [CrossRef]
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