|
|
Efficient continuous wave and passively mode-locked Tm-doped crystalline silicate laser |
Optics Express, Vol. 20, Issue 17, pp. 18630-18635 (2012)
http://dx.doi.org/10.1364/OE.20.018630
Acrobat PDF (737 KB)
Abstract
An efficient continuous wave and passively mode-locked thulium-doped oxyorthosilicate Tm:LuYSiO5 laser is demonstrated. A maximum slope efficiency of 56.3% is obtained at 2057.4 nm in continuous wave operation regime. With an InGaAs quantum well SESAM, self-starting passively mode-locked Tm:LuYSiO5 laser is realized in the 1929 nm to 2065 nm spectral region. A maximum average output power of 130.2 mW with a pulse duration of 33.1 ps and a repetition rate of about 100 MHz is generated at 1984.1 nm. Pulses as short as 24.2 ps with an average output power of 100 mW are obtained with silicon prisms where used to manage the intracavity dispersion. The shortest pulse duration of about 19.6 ps is obtained with an average output power of 64.5 mW at 1944.3 nm.
© 2012 OSA
1. Introduction
T. M. Taczak and D. K. Killinger, “Development of a tunable, narrow-linewidth, cw 2.066-μm Ho:YLF laser for remote sensing of atmospheric CO2 and H2O,” Appl. Opt. 37(36), 8460–8476 (1998). [CrossRef] [PubMed]
P. A. Budni, L. A. Pomeranz, M. L. Lemons, C. A. Miller, J. R. Mosto, and E. P. Chicklis, “Efficient mid-infrared laser using 1.9-μm pumped Ho:YAG and ZnGeP2 optical parametric oscillators,” J. Opt. Soc. Am. B 17(5), 723–728 (2000). [CrossRef]
J. F. Pinto, L. Esterowitz, and G. H. Rosenblatt, “Continuous-wave mode-locked 2- µm Tm: YAG laser,” Opt. Lett. 17(10), 731–732 (1992). [CrossRef] [PubMed]
F. Haxsen, A. Ruehl, M. Engelbrecht, D. Wandt, U. Morgner, and D. Kracht, “Stretched-pulse operation of a thulium-doped fiber laser,” Opt. Express 16(25), 20471–20476 (2008). [CrossRef] [PubMed]
A. A. Lagatsky, F. Fusari, S. Calvez, J. A. Gupta, V. E. Kisel, N. V. Kuleshov, C. T. A. Brown, M. D. Dawson, and W. Sibbett, “Passive mode locking of a Tm,Ho:KY(WO4)2 laser around 2 μm,” Opt. Lett. 34(17), 2587–2589 (2009). [CrossRef] [PubMed]
W. B. Cho, A. Schmidt, J. H. Yim, S. Y. Choi, S. Lee, F. Rotermund, U. Griebner, G. Steinmeyer, V. Petrov, X. Mateos, M. C. Pujol, J. J. Carvajal, M. Aguiló, and F. Díaz, “Passive mode-locking of a Tm-doped bulk laser near 2 microm using a carbon nanotube saturable absorber,” Opt. Express 17(13), 11007–11012 (2009). [CrossRef] [PubMed]
A. A. Lagatsky, X. Han, M. D. Serrano, C. Cascales, C. Zaldo, S. Calvez, M. D. Dawson, J. A. Gupta, C. T. A. Brown, and W. Sibbett, “Femtosecond (191 fs) NaY(WO4)2 Tm,Ho-codoped laser at 2060 nm,” Opt. Lett. 35(18), 3027–3029 (2010). [CrossRef] [PubMed]
A. Schmidt, P. Koopmann, G. Huber, P. Fuhrberg, S. Y. Choi, D. Yeom, F. Rotermund, V. Petrov, and U. Griebner, “175 fs Tm:Lu2O3 laser at 2.07 µm mode-locked using single-walled carbon nanotubes,” Opt. Express 20(5), 5313–5318 (2012). [CrossRef]
K. J. Yang, H. Bromberger, H. Ruf, H. Schäfer, J. Neuhaus, T. Dekorsy, C. V. B. Grimm, M. Helm, K. Biermann, and H. Künzel, “Passively mode-locked Tm,Ho:YAG laser at 2 µm based on saturable absorption of intersubband transitions in quantum wells,” Opt. Express 18(7), 6537–6544 (2010). [CrossRef] [PubMed]
I. A. Denisov, N. A. Skoptsov, M. S. Gaponenko, A. M. Malyarevich, K. V. Yumashev, and A. A. Lipovskii, “Passive mode locking of 2.09 microm Cr,Tm,Ho:Y3Sc2Al3O12 laser using PbS quantum-dot-doped glass,” Opt. Lett. 34(21), 3403–3405 (2009). [CrossRef] [PubMed]
A. A. Lagatsky, X. Han, M. D. Serrano, C. Cascales, C. Zaldo, S. Calvez, M. D. Dawson, J. A. Gupta, C. T. A. Brown, and W. Sibbett, “Femtosecond (191 fs) NaY(WO4)2 Tm,Ho-codoped laser at 2060 nm,” Opt. Lett. 35(18), 3027–3029 (2010). [CrossRef] [PubMed]
A. Schmidt, P. Koopmann, G. Huber, P. Fuhrberg, S. Y. Choi, D. Yeom, F. Rotermund, V. Petrov, and U. Griebner, “175 fs Tm:Lu2O3 laser at 2.07 µm mode-locked using single-walled carbon nanotubes,” Opt. Express 20(5), 5313–5318 (2012). [CrossRef]
B. Q. Yao, L. L. Zheng, X. M. Duan, Y. Z. Wang, G. J. Zhao, and Q. Dong, “Diode pumped room-temperature continuous wave Tm-doped Lu2SiO5 laser,” Laser Phys. Lett. 5(10), 714–718 (2008). [CrossRef]
C. Li, R. Moncorge, J. C. Souriau, and C. Wyon, “Efficient 2.05 µm room temperature Y2SiO5:Tm3+ cw laser,” Opt. Commun. 101(5-6), 356–360 (1993). [CrossRef]
L. Fornasiero, N. Berner, B.-M. Dicks, E. Mix, V. Peters, K. Petermann, and G. Huber, “Broadly Tunable Laser Emission from Tm:Y2O3 and Tm:Sc2O3 at 2 µm,” in Conference On Advanced Solid State Lasers, Technical Digest (CD) (Optical Society of America, 1999), paper WD5. http://www.opticsinfobase.org/abstract.cfm?uri=ASSL-1999-WD5
J. P. Foing, E. Scheer, B. Viana, and N. Britos, “Diode-pumped emission of Tm3+-doped Ca2Al2SiO7 crystals,” Appl. Opt. 37(21), 4857–4861 (1998). [CrossRef] [PubMed]
O. Silvestre, M. C. Pujol, M. Rico, F. Guell, M. Aguilo, and F. Diaz, “Thulium doped monoclinic KLu(WO4)2 single crystals: growth and spectroscopy,” Appl. Phys. B 87(4), 707–716 (2007). [CrossRef]
L. Fornasiero, N. Berner, B.-M. Dicks, E. Mix, V. Peters, K. Petermann, and G. Huber, “Broadly Tunable Laser Emission from Tm:Y2O3 and Tm:Sc2O3 at 2 µm,” in Conference On Advanced Solid State Lasers, Technical Digest (CD) (Optical Society of America, 1999), paper WD5. http://www.opticsinfobase.org/abstract.cfm?uri=ASSL-1999-WD5
L. Fornasiero, N. Berner, B.-M. Dicks, E. Mix, V. Peters, K. Petermann, and G. Huber, “Broadly Tunable Laser Emission from Tm:Y2O3 and Tm:Sc2O3 at 2 µm,” in Conference On Advanced Solid State Lasers, Technical Digest (CD) (Optical Society of America, 1999), paper WD5. http://www.opticsinfobase.org/abstract.cfm?uri=ASSL-1999-WD5
B. Q. Yao, L. L. Zheng, X. M. Duan, Y. Z. Wang, G. J. Zhao, and Q. Dong, “Diode pumped room-temperature continuous wave Tm-doped Lu2SiO5 laser,” Laser Phys. Lett. 5(10), 714–718 (2008). [CrossRef]
W. X. Li, S. X. Xu, H. F. Pan, L. E. Ding, H. P. Zeng, W. Lu, C. L. Guo, G. J. Zhao, C. F. Yan, L. B. Su, and J. Xu, “Efficient tunable diode-pumped Yb:LYSO laser,” Opt. Express 14(15), 6681–6686 (2006). [CrossRef] [PubMed]
Z. H. Cong, D. Y. Tang, W. De Tan, J. Zhang, C. W. Xu, D. W. Luo, X. D. Xu, D. Z. Li, J. Xu, X. Y. Zhang, and Q. P. Wang, “Dual-wavelength passively mode-locked Nd:LuYSiO5 laser with SESAM,” Opt. Express 19(5), 3984–3989 (2011). [CrossRef] [PubMed]
W. X. Li, S. X. Xu, H. F. Pan, L. E. Ding, H. P. Zeng, W. Lu, C. L. Guo, G. J. Zhao, C. F. Yan, L. B. Su, and J. Xu, “Efficient tunable diode-pumped Yb:LYSO laser,” Opt. Express 14(15), 6681–6686 (2006). [CrossRef] [PubMed]
2. Experimental setup and results
K. J. Yang, H. Bromberger, H. Ruf, H. Schäfer, J. Neuhaus, T. Dekorsy, C. V. B. Grimm, M. Helm, K. Biermann, and H. Künzel, “Passively mode-locked Tm,Ho:YAG laser at 2 µm based on saturable absorption of intersubband transitions in quantum wells,” Opt. Express 18(7), 6537–6544 (2010). [CrossRef] [PubMed]
S. D. Zhang, S. T. Wang, X. D. Shen, H. B. Wang, H. Y. Zhong, S. X. Zhang, and J. Xu, “Czochralski growth of rare-earth orthosilicates-Y2SiO5 single crystals,” J. Cryst. Growth 197(4), 901–904 (1999). [CrossRef]
B. Q. Yao, L. J. Li, L. L. Zheng, Y. Z. Wang, G. J. Zhao, and J. Xu, “Diode-pumped continuous wave and Q-switched operation of a c-cut Tm,Ho:YAlO3 laser,” Opt. Express 16(7), 5075–5081 (2008). [CrossRef] [PubMed]
3. Conclusion
Acknowledgments
References and links
T. M. Taczak and D. K. Killinger, “Development of a tunable, narrow-linewidth, cw 2.066-μm Ho:YLF laser for remote sensing of atmospheric CO2 and H2O,” Appl. Opt. 37(36), 8460–8476 (1998). [CrossRef] [PubMed] | |
P. A. Budni, L. A. Pomeranz, M. L. Lemons, C. A. Miller, J. R. Mosto, and E. P. Chicklis, “Efficient mid-infrared laser using 1.9-μm pumped Ho:YAG and ZnGeP2 optical parametric oscillators,” J. Opt. Soc. Am. B 17(5), 723–728 (2000). [CrossRef] | |
J. F. Pinto, L. Esterowitz, and G. H. Rosenblatt, “Continuous-wave mode-locked 2- µm Tm: YAG laser,” Opt. Lett. 17(10), 731–732 (1992). [CrossRef] [PubMed] | |
F. Haxsen, A. Ruehl, M. Engelbrecht, D. Wandt, U. Morgner, and D. Kracht, “Stretched-pulse operation of a thulium-doped fiber laser,” Opt. Express 16(25), 20471–20476 (2008). [CrossRef] [PubMed] | |
A. A. Lagatsky, F. Fusari, S. Calvez, J. A. Gupta, V. E. Kisel, N. V. Kuleshov, C. T. A. Brown, M. D. Dawson, and W. Sibbett, “Passive mode locking of a Tm,Ho:KY(WO4)2 laser around 2 μm,” Opt. Lett. 34(17), 2587–2589 (2009). [CrossRef] [PubMed] | |
W. B. Cho, A. Schmidt, J. H. Yim, S. Y. Choi, S. Lee, F. Rotermund, U. Griebner, G. Steinmeyer, V. Petrov, X. Mateos, M. C. Pujol, J. J. Carvajal, M. Aguiló, and F. Díaz, “Passive mode-locking of a Tm-doped bulk laser near 2 microm using a carbon nanotube saturable absorber,” Opt. Express 17(13), 11007–11012 (2009). [CrossRef] [PubMed] | |
A. A. Lagatsky, X. Han, M. D. Serrano, C. Cascales, C. Zaldo, S. Calvez, M. D. Dawson, J. A. Gupta, C. T. A. Brown, and W. Sibbett, “Femtosecond (191 fs) NaY(WO4)2 Tm,Ho-codoped laser at 2060 nm,” Opt. Lett. 35(18), 3027–3029 (2010). [CrossRef] [PubMed] | |
A. Schmidt, P. Koopmann, G. Huber, P. Fuhrberg, S. Y. Choi, D. Yeom, F. Rotermund, V. Petrov, and U. Griebner, “175 fs Tm:Lu2O3 laser at 2.07 µm mode-locked using single-walled carbon nanotubes,” Opt. Express 20(5), 5313–5318 (2012). [CrossRef] | |
K. J. Yang, H. Bromberger, H. Ruf, H. Schäfer, J. Neuhaus, T. Dekorsy, C. V. B. Grimm, M. Helm, K. Biermann, and H. Künzel, “Passively mode-locked Tm,Ho:YAG laser at 2 µm based on saturable absorption of intersubband transitions in quantum wells,” Opt. Express 18(7), 6537–6544 (2010). [CrossRef] [PubMed] | |
I. A. Denisov, N. A. Skoptsov, M. S. Gaponenko, A. M. Malyarevich, K. V. Yumashev, and A. A. Lipovskii, “Passive mode locking of 2.09 microm Cr,Tm,Ho:Y3Sc2Al3O12 laser using PbS quantum-dot-doped glass,” Opt. Lett. 34(21), 3403–3405 (2009). [CrossRef] [PubMed] | |
B. Q. Yao, L. L. Zheng, X. M. Duan, Y. Z. Wang, G. J. Zhao, and Q. Dong, “Diode pumped room-temperature continuous wave Tm-doped Lu2SiO5 laser,” Laser Phys. Lett. 5(10), 714–718 (2008). [CrossRef] | |
C. Li, R. Moncorge, J. C. Souriau, and C. Wyon, “Efficient 2.05 µm room temperature Y2SiO5:Tm3+ cw laser,” Opt. Commun. 101(5-6), 356–360 (1993). [CrossRef] | |
L. Fornasiero, N. Berner, B.-M. Dicks, E. Mix, V. Peters, K. Petermann, and G. Huber, “Broadly Tunable Laser Emission from Tm:Y2O3 and Tm:Sc2O3 at 2 µm,” in Conference On Advanced Solid State Lasers, Technical Digest (CD) (Optical Society of America, 1999), paper WD5. http://www.opticsinfobase.org/abstract.cfm?uri=ASSL-1999-WD5 | |
J. P. Foing, E. Scheer, B. Viana, and N. Britos, “Diode-pumped emission of Tm3+-doped Ca2Al2SiO7 crystals,” Appl. Opt. 37(21), 4857–4861 (1998). [CrossRef] [PubMed] | |
O. Silvestre, M. C. Pujol, M. Rico, F. Guell, M. Aguilo, and F. Diaz, “Thulium doped monoclinic KLu(WO4)2 single crystals: growth and spectroscopy,” Appl. Phys. B 87(4), 707–716 (2007). [CrossRef] | |
W. X. Li, S. X. Xu, H. F. Pan, L. E. Ding, H. P. Zeng, W. Lu, C. L. Guo, G. J. Zhao, C. F. Yan, L. B. Su, and J. Xu, “Efficient tunable diode-pumped Yb:LYSO laser,” Opt. Express 14(15), 6681–6686 (2006). [CrossRef] [PubMed] | |
J. Liu, W. W. Wang, C. C. Liu, X. W. Fan, L. H. Zheng, L. B. Su, and J. Xu, “Efficient diode-pumped self-mode-locking Yb:LYSO laser,” Laser Phys. Lett. 7(2), 104–107 (2010). | |
D. Z. Li, X. D. Xu, D. H. Zhou, S. D. Zhuang, Z. P. Wang, C. T. Xia, F. Wu, and J. Xu, “Crystal growth, spectral properties, and laser demonstration of laser crystal Nd:LYSO,” Laser Phys. Lett. 7(11), 798–804 (2010). [CrossRef] | |
Z. H. Cong, D. Y. Tang, W. De Tan, J. Zhang, C. W. Xu, D. W. Luo, X. D. Xu, D. Z. Li, J. Xu, X. Y. Zhang, and Q. P. Wang, “Dual-wavelength passively mode-locked Nd:LuYSiO5 laser with SESAM,” Opt. Express 19(5), 3984–3989 (2011). [CrossRef] [PubMed] | |
S. D. Zhang, S. T. Wang, X. D. Shen, H. B. Wang, H. Y. Zhong, S. X. Zhang, and J. Xu, “Czochralski growth of rare-earth orthosilicates-Y2SiO5 single crystals,” J. Cryst. Growth 197(4), 901–904 (1999). [CrossRef] | |
B. Q. Yao, L. J. Li, L. L. Zheng, Y. Z. Wang, G. J. Zhao, and J. Xu, “Diode-pumped continuous wave and Q-switched operation of a c-cut Tm,Ho:YAlO3 laser,” Opt. Express 16(7), 5075–5081 (2008). [CrossRef] [PubMed] |
OCIS Codes
(140.3070) Lasers and laser optics : Infrared and far-infrared lasers
(140.3600) Lasers and laser optics : Lasers, tunable
(140.4050) Lasers and laser optics : Mode-locked lasers
(140.7090) Lasers and laser optics : Ultrafast lasers
ToC Category:
Lasers and Laser Optics
History
Original Manuscript: June 11, 2012
Revised Manuscript: July 20, 2012
Manuscript Accepted: July 20, 2012
Published: July 31, 2012
Citation
K. J. Yang, H. Bromberger, D. Heinecke, C. Kölbl, H. Schäfer, T. Dekorsy, S. Z. Zhao, L.H. Zheng, J. Xu, and G. J. Zhao, "Efficient continuous wave and passively mode-locked Tm-doped crystalline silicate laser," Opt. Express 20, 18630-18635 (2012)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-20-17-18630
Sort: Year | Journal | Reset
References
- T. M. Taczak and D. K. Killinger, “Development of a tunable, narrow-linewidth, cw 2.066-μm Ho:YLF laser for remote sensing of atmospheric CO2 and H2O,” Appl. Opt.37(36), 8460–8476 (1998). [CrossRef] [PubMed]
- P. A. Budni, L. A. Pomeranz, M. L. Lemons, C. A. Miller, J. R. Mosto, and E. P. Chicklis, “Efficient mid-infrared laser using 1.9-μm pumped Ho:YAG and ZnGeP2 optical parametric oscillators,” J. Opt. Soc. Am. B17(5), 723–728 (2000). [CrossRef]
- J. F. Pinto, L. Esterowitz, and G. H. Rosenblatt, “Continuous-wave mode-locked 2- µm Tm: YAG laser,” Opt. Lett.17(10), 731–732 (1992). [CrossRef] [PubMed]
- F. Haxsen, A. Ruehl, M. Engelbrecht, D. Wandt, U. Morgner, and D. Kracht, “Stretched-pulse operation of a thulium-doped fiber laser,” Opt. Express16(25), 20471–20476 (2008). [CrossRef] [PubMed]
- A. A. Lagatsky, F. Fusari, S. Calvez, J. A. Gupta, V. E. Kisel, N. V. Kuleshov, C. T. A. Brown, M. D. Dawson, and W. Sibbett, “Passive mode locking of a Tm,Ho:KY(WO4)2 laser around 2 μm,” Opt. Lett.34(17), 2587–2589 (2009). [CrossRef] [PubMed]
- W. B. Cho, A. Schmidt, J. H. Yim, S. Y. Choi, S. Lee, F. Rotermund, U. Griebner, G. Steinmeyer, V. Petrov, X. Mateos, M. C. Pujol, J. J. Carvajal, M. Aguiló, and F. Díaz, “Passive mode-locking of a Tm-doped bulk laser near 2 microm using a carbon nanotube saturable absorber,” Opt. Express17(13), 11007–11012 (2009). [CrossRef] [PubMed]
- A. A. Lagatsky, X. Han, M. D. Serrano, C. Cascales, C. Zaldo, S. Calvez, M. D. Dawson, J. A. Gupta, C. T. A. Brown, and W. Sibbett, “Femtosecond (191 fs) NaY(WO4)2 Tm,Ho-codoped laser at 2060 nm,” Opt. Lett.35(18), 3027–3029 (2010). [CrossRef] [PubMed]
- A. Schmidt, P. Koopmann, G. Huber, P. Fuhrberg, S. Y. Choi, D. Yeom, F. Rotermund, V. Petrov, and U. Griebner, “175 fs Tm:Lu2O3 laser at 2.07 µm mode-locked using single-walled carbon nanotubes,” Opt. Express20(5), 5313–5318 (2012). [CrossRef]
- K. J. Yang, H. Bromberger, H. Ruf, H. Schäfer, J. Neuhaus, T. Dekorsy, C. V. B. Grimm, M. Helm, K. Biermann, and H. Künzel, “Passively mode-locked Tm,Ho:YAG laser at 2 µm based on saturable absorption of intersubband transitions in quantum wells,” Opt. Express18(7), 6537–6544 (2010). [CrossRef] [PubMed]
- I. A. Denisov, N. A. Skoptsov, M. S. Gaponenko, A. M. Malyarevich, K. V. Yumashev, and A. A. Lipovskii, “Passive mode locking of 2.09 microm Cr,Tm,Ho:Y3Sc2Al3O12 laser using PbS quantum-dot-doped glass,” Opt. Lett.34(21), 3403–3405 (2009). [CrossRef] [PubMed]
- B. Q. Yao, L. L. Zheng, X. M. Duan, Y. Z. Wang, G. J. Zhao, and Q. Dong, “Diode pumped room-temperature continuous wave Tm-doped Lu2SiO5 laser,” Laser Phys. Lett.5(10), 714–718 (2008). [CrossRef]
- C. Li, R. Moncorge, J. C. Souriau, and C. Wyon, “Efficient 2.05 µm room temperature Y2SiO5:Tm3+ cw laser,” Opt. Commun.101(5-6), 356–360 (1993). [CrossRef]
- L. Fornasiero, N. Berner, B.-M. Dicks, E. Mix, V. Peters, K. Petermann, and G. Huber, “Broadly Tunable Laser Emission from Tm:Y2O3 and Tm:Sc2O3 at 2 µm,” in Conference On Advanced Solid State Lasers, Technical Digest (CD) (Optical Society of America, 1999), paper WD5. http://www.opticsinfobase.org/abstract.cfm?uri=ASSL-1999-WD5
- J. P. Foing, E. Scheer, B. Viana, and N. Britos, “Diode-pumped emission of Tm3+-doped Ca2Al2SiO7 crystals,” Appl. Opt.37(21), 4857–4861 (1998). [CrossRef] [PubMed]
- O. Silvestre, M. C. Pujol, M. Rico, F. Guell, M. Aguilo, and F. Diaz, “Thulium doped monoclinic KLu(WO4)2 single crystals: growth and spectroscopy,” Appl. Phys. B87(4), 707–716 (2007). [CrossRef]
- W. X. Li, S. X. Xu, H. F. Pan, L. E. Ding, H. P. Zeng, W. Lu, C. L. Guo, G. J. Zhao, C. F. Yan, L. B. Su, and J. Xu, “Efficient tunable diode-pumped Yb:LYSO laser,” Opt. Express14(15), 6681–6686 (2006). [CrossRef] [PubMed]
- J. Liu, W. W. Wang, C. C. Liu, X. W. Fan, L. H. Zheng, L. B. Su, and J. Xu, “Efficient diode-pumped self-mode-locking Yb:LYSO laser,” Laser Phys. Lett.7(2), 104–107 (2010).
- D. Z. Li, X. D. Xu, D. H. Zhou, S. D. Zhuang, Z. P. Wang, C. T. Xia, F. Wu, and J. Xu, “Crystal growth, spectral properties, and laser demonstration of laser crystal Nd:LYSO,” Laser Phys. Lett.7(11), 798–804 (2010). [CrossRef]
- Z. H. Cong, D. Y. Tang, W. De Tan, J. Zhang, C. W. Xu, D. W. Luo, X. D. Xu, D. Z. Li, J. Xu, X. Y. Zhang, and Q. P. Wang, “Dual-wavelength passively mode-locked Nd:LuYSiO5 laser with SESAM,” Opt. Express19(5), 3984–3989 (2011). [CrossRef] [PubMed]
- S. D. Zhang, S. T. Wang, X. D. Shen, H. B. Wang, H. Y. Zhong, S. X. Zhang, and J. Xu, “Czochralski growth of rare-earth orthosilicates-Y2SiO5 single crystals,” J. Cryst. Growth197(4), 901–904 (1999). [CrossRef]
- B. Q. Yao, L. J. Li, L. L. Zheng, Y. Z. Wang, G. J. Zhao, and J. Xu, “Diode-pumped continuous wave and Q-switched operation of a c-cut Tm,Ho:YAlO3 laser,” Opt. Express16(7), 5075–5081 (2008). [CrossRef] [PubMed]
Cited By |
OSA is able to provide readers links to articles that cite this paper by participating in CrossRef's Cited-By Linking service. CrossRef includes content from more than 3000 publishers and societies. In addition to listing OSA journal articles that cite this paper, citing articles from other participating publishers will also be listed.





OSA is a member of 