Yb:fiber-laser-pumped high-energy picosecond optical parametric oscillator
Optics Express, Vol. 17, Issue 16, pp. 14229-14234 (2009)
http://dx.doi.org/10.1364/OE.17.014229
Acrobat PDF (580 KB)
Abstract
We report a high-energy extended-cavity MgO:PPLN optical parametric oscillator, synchronously-pumped by a femtosecond Yb:fiber laser. The oscillator operated at a signal wavelength of 1530 nm with a repetition-frequency of 15.3 MHz (9.8 m length) achieved using intracavity relay-imaging optics. The signal pulses had an average power above 1.0 W, durations of 1.5 ps and energies greater than 70 nJ, making it a potential source for rapid femtosecond waveguide inscription in infrared materials.
© 2009 Optical Society of America
1. Introduction
C. Schaffer, A. Brodeur, J. Garcia, and E. Mazur, “Micromachining bulk glass by use of femtosecond laser pulses with nanojoule energy,” Opt. Lett. 26, 93–95 (2001). [CrossRef]
S. M. Eaton, H. Zhang, M. L. Ng, J. Li, W. Chen, S. Ho, and P. R. Herman, “Transition from thermal diffusion to heat accumulation in high repetition rate femtosecond laser writing of buried optical waveguides,” Opt. Express 16, 9443–9458 (2008). [CrossRef] [PubMed]
A. Killi, U. Morgner, M. J. Lederer, and D. Kopf, “Diode-pumped femtosecond laser oscillator with cavity dumping,” Opt. Lett. 29, 1288–1290 (2004). [CrossRef] [PubMed]
S. H. Cho, B. E. Bouma, E. P. Ippen, and J .G. Fujimoto, “Low-repetition-rate high-peak-power Kerr-lens mode-locked Ti:Al2O3 laser with a multiple-pass cavity,” Opt. Lett. 24, 417–419 (1999). [CrossRef]
S. H. Cho, F. X. Kärtner, U. Morgner, E. P. Ippen, J. G. Fujimoto, J. Cunningham, and W. H. Knox, “Generation of 90-nJ pulses with a 4-MHz repetition-rate Kerr-lens mode-locked Ti:Al2O3 laser operating with net positive and negative intracavity dispersion,” Opt. Lett. 26, 560–562 (2001). [CrossRef]
V. Shcheslavskiy, V. V. Yakovlev, and A. Ivanov, “High-energy self-starting femtosecond Cr4+:Mg2SiO4 oscillator operating at a low repetition rate,” Opt. Lett. 26, 1999–2001 (2001). [CrossRef]
S. H. Cho, B. E. Bouma, E. P. Ippen, and J .G. Fujimoto, “Low-repetition-rate high-peak-power Kerr-lens mode-locked Ti:Al2O3 laser with a multiple-pass cavity,” Opt. Lett. 24, 417–419 (1999). [CrossRef]
S. H. Cho, F. X. Kärtner, U. Morgner, E. P. Ippen, J. G. Fujimoto, J. Cunningham, and W. H. Knox, “Generation of 90-nJ pulses with a 4-MHz repetition-rate Kerr-lens mode-locked Ti:Al2O3 laser operating with net positive and negative intracavity dispersion,” Opt. Lett. 26, 560–562 (2001). [CrossRef]
D. N. Papadopoulos, N. Forget, M. Delaigue, F. Druon, F. Balembois, and P. Georges, “Passively mode-locked diode-pumped Nd:YVO4 oscillator operating at an ultralow repetition rate,” Opt. Lett. 28, 1838–1840 (2003). [CrossRef] [PubMed]
A. Killi, U. Morgner, M. J. Lederer, and D. Kopf, “Diode-pumped femtosecond laser oscillator with cavity dumping,” Opt. Lett. 29, 1288–1290 (2004). [CrossRef] [PubMed]
V. Shcheslavskiy, V. V. Yakovlev, and A. Ivanov, “High-energy self-starting femtosecond Cr4+:Mg2SiO4 oscillator operating at a low repetition rate,” Opt. Lett. 26, 1999–2001 (2001). [CrossRef]
C. Schaffer, A. Brodeur, J. Garcia, and E. Mazur, “Micromachining bulk glass by use of femtosecond laser pulses with nanojoule energy,” Opt. Lett. 26, 93–95 (2001). [CrossRef]
C. Min and T. Joo, “Near-infrared cavity-dumped femtosecond optical parametric oscillator,” Opt. Lett. 30, 1855–1857 (2005). [CrossRef] [PubMed]
T. Südmeyer, E. Innerhofer, F. Brunner, R. Paschotta, T. Usami, H. Ito, S. Kurimura, K. Kitamura, D. C. Hanna, and U. Keller, “High-power femtosecond fiber-feedback optical parametric oscillator based on periodically poled stoichiometric LiTaO3 ,” Opt. Lett. 29, 1111–1113 (2004). [CrossRef] [PubMed]
M. O’Connor, M. Watson, D. Shepherd, D. Hanna, J. Price, A. Malinowski, J. Nilsson, N. Broderick, and D. Richardson, “Synchronously pumped optical parametric oscillator driven by a femtosecond mode-locked fiber laser,” Opt. Lett. 27, 1052–1054 (2002). [CrossRef]
2. Optical parametric oscillator configuration
S. H. Cho, B. E. Bouma, E. P. Ippen, and J .G. Fujimoto, “Low-repetition-rate high-peak-power Kerr-lens mode-locked Ti:Al2O3 laser with a multiple-pass cavity,” Opt. Lett. 24, 417–419 (1999). [CrossRef]
S. H. Cho, F. X. Kärtner, U. Morgner, E. P. Ippen, J. G. Fujimoto, J. Cunningham, and W. H. Knox, “Generation of 90-nJ pulses with a 4-MHz repetition-rate Kerr-lens mode-locked Ti:Al2O3 laser operating with net positive and negative intracavity dispersion,” Opt. Lett. 26, 560–562 (2001). [CrossRef]
T. Südmeyer, E. Innerhofer, F. Brunner, R. Paschotta, T. Usami, H. Ito, S. Kurimura, K. Kitamura, D. C. Hanna, and U. Keller, “High-power femtosecond fiber-feedback optical parametric oscillator based on periodically poled stoichiometric LiTaO3 ,” Opt. Lett. 29, 1111–1113 (2004). [CrossRef] [PubMed]
3. Performance characterizations
3.1 Pump depletion and conversion efficiency
3.2 Intensity noise
D. S. Butterworth, S. Girard, and D. C. Hanna, “A simple technique to achieve active cavity-length stabilisation in a synchronously pumped optical parametric oscillator,” Opt. Commun. 123, 577–582 (1996). [CrossRef]
3.3 Signal pulse characterizations
D. T. Reid, W. Sibbett, J. M. Dudley, L. P. Barry, B. Thomsen, and J. D. Harvey, “Commercial semiconductor devices for two photon absorption autocorrelation of ultrashort light pulses,“ Appl. Opt. 37, 8142–8144 (1998). [CrossRef]
4. Summary and conclusions
References and links
C. Schaffer, A. Brodeur, J. Garcia, and E. Mazur, “Micromachining bulk glass by use of femtosecond laser pulses with nanojoule energy,” Opt. Lett. 26, 93–95 (2001). [CrossRef] | |
S. M. Eaton, H. Zhang, M. L. Ng, J. Li, W. Chen, S. Ho, and P. R. Herman, “Transition from thermal diffusion to heat accumulation in high repetition rate femtosecond laser writing of buried optical waveguides,” Opt. Express 16, 9443–9458 (2008). [CrossRef] [PubMed] | |
A. Killi, U. Morgner, M. J. Lederer, and D. Kopf, “Diode-pumped femtosecond laser oscillator with cavity dumping,” Opt. Lett. 29, 1288–1290 (2004). [CrossRef] [PubMed] | |
S. H. Cho, B. E. Bouma, E. P. Ippen, and J .G. Fujimoto, “Low-repetition-rate high-peak-power Kerr-lens mode-locked Ti:Al2O3 laser with a multiple-pass cavity,” Opt. Lett. 24, 417–419 (1999). [CrossRef] | |
S. H. Cho, F. X. Kärtner, U. Morgner, E. P. Ippen, J. G. Fujimoto, J. Cunningham, and W. H. Knox, “Generation of 90-nJ pulses with a 4-MHz repetition-rate Kerr-lens mode-locked Ti:Al2O3 laser operating with net positive and negative intracavity dispersion,” Opt. Lett. 26, 560–562 (2001). [CrossRef] | |
V. Shcheslavskiy, V. V. Yakovlev, and A. Ivanov, “High-energy self-starting femtosecond Cr4+:Mg2SiO4 oscillator operating at a low repetition rate,” Opt. Lett. 26, 1999–2001 (2001). [CrossRef] | |
D. N. Papadopoulos, N. Forget, M. Delaigue, F. Druon, F. Balembois, and P. Georges, “Passively mode-locked diode-pumped Nd:YVO4 oscillator operating at an ultralow repetition rate,” Opt. Lett. 28, 1838–1840 (2003). [CrossRef] [PubMed] | |
C. Min and T. Joo, “Near-infrared cavity-dumped femtosecond optical parametric oscillator,” Opt. Lett. 30, 1855–1857 (2005). [CrossRef] [PubMed] | |
T. Südmeyer, E. Innerhofer, F. Brunner, R. Paschotta, T. Usami, H. Ito, S. Kurimura, K. Kitamura, D. C. Hanna, and U. Keller, “High-power femtosecond fiber-feedback optical parametric oscillator based on periodically poled stoichiometric LiTaO3 ,” Opt. Lett. 29, 1111–1113 (2004). [CrossRef] [PubMed] | |
M. O’Connor, M. Watson, D. Shepherd, D. Hanna, J. Price, A. Malinowski, J. Nilsson, N. Broderick, and D. Richardson, “Synchronously pumped optical parametric oscillator driven by a femtosecond mode-locked fiber laser,” Opt. Lett. 27, 1052–1054 (2002). [CrossRef] | |
D. S. Butterworth, S. Girard, and D. C. Hanna, “A simple technique to achieve active cavity-length stabilisation in a synchronously pumped optical parametric oscillator,” Opt. Commun. 123, 577–582 (1996). [CrossRef] | |
D. T. Reid, W. Sibbett, J. M. Dudley, L. P. Barry, B. Thomsen, and J. D. Harvey, “Commercial semiconductor devices for two photon absorption autocorrelation of ultrashort light pulses,“ Appl. Opt. 37, 8142–8144 (1998). [CrossRef] |
OCIS Codes
(190.4970) Nonlinear optics : Parametric oscillators and amplifiers
(320.7090) Ultrafast optics : Ultrafast lasers
ToC Category:
Nonlinear Optics
History
Original Manuscript: May 8, 2009
Revised Manuscript: June 22, 2009
Manuscript Accepted: June 25, 2009
Published: July 31, 2009
Citation
T. P. Lamour, L. Kornaszewski, J. H. Sun, and D. T. Reid, "Yb:fiber-laser-pumped high-energy picosecond optical parametric oscillator," Opt. Express 17, 14229-14234 (2009)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-17-16-14229
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References
- C. Schaffer, A. Brodeur, J. Garcia, and E. Mazur, "Micromachining bulk glass by use of femtosecond laser pulses with nanojoule energy," Opt. Lett. 26, 93-95 (2001). [CrossRef]
- S. M. Eaton, H. Zhang, M. L. Ng, J. Li, W. Chen, S. Ho, and P. R. Herman, "Transition from thermal diffusion to heat accumulation in high repetition rate femtosecond laser writing of buried optical waveguides," Opt. Express 16, 9443-9458 (2008). [CrossRef] [PubMed]
- A. Killi, U. Morgner, M. J. Lederer, and D. Kopf, "Diode-pumped femtosecond laser oscillator with cavity dumping," Opt. Lett. 29, 1288-1290 (2004). [CrossRef] [PubMed]
- S. H. Cho, B. E. Bouma, E. P. Ippen, and J.G. Fujimoto, "Low-repetition-rate high-peak-power Kerr-lens mode-locked Ti:Al2O3 laser with a multiple-pass cavity," Opt. Lett. 24, 417-419 (1999). [CrossRef]
- S. H. Cho, F. X. Kärtner, U. Morgner, E. P. Ippen, J. G. Fujimoto, J. Cunningham, and W. H. Knox, "Generation of 90-nJ pulses with a 4-MHz repetition-rate Kerr-lens mode-locked Ti:Al2O3 laser operating with net positive and negative intracavity dispersion," Opt. Lett. 26, 560-562 (2001). [CrossRef]
- V. Shcheslavskiy, V. V. Yakovlev, and A. Ivanov, "High-energy self-starting femtosecond Cr4+:Mg2SiO4 oscillator operating at a low repetition rate," Opt. Lett. 26, 1999-2001 (2001). [CrossRef]
- D. N. Papadopoulos, N. Forget, M. Delaigue, F. Druon, F. Balembois, and P. Georges, "Passively mode-locked diode-pumped Nd:YVO4 oscillator operating at an ultralow repetition rate," Opt. Lett. 28, 1838-1840 (2003). [CrossRef] [PubMed]
- C. Min and T. Joo, "Near-infrared cavity-dumped femtosecond optical parametric oscillator," Opt. Lett. 30, 1855-1857 (2005). [CrossRef] [PubMed]
- T. Südmeyer, E. Innerhofer, F. Brunner, R. Paschotta, T. Usami, H. Ito, S. Kurimura, K. Kitamura, D. C. Hanna, and U. Keller, "High-power femtosecond fiber-feedback optical parametric oscillator based on periodically poled stoichiometric LiTaO3," Opt. Lett. 29, 1111-1113 (2004). [CrossRef] [PubMed]
- M. O'Connor, M. Watson, D. Shepherd, D. Hanna, J. Price, A. Malinowski, J. Nilsson, N. Broderick, and D. Richardson, "Synchronously pumped optical parametric oscillator driven by a femtosecond mode-locked fiber laser," Opt. Lett. 27, 1052-1054 (2002). [CrossRef]
- A.E. Siegman, Lasers (University Science Books, 1986).
- D. S. Butterworth, S. Girard, and D. C. Hanna, "A simple technique to achieve active cavity-length stabilisation in a synchronously pumped optical parametric oscillator," Opt. Commun. 123, 577-582 (1996). [CrossRef]
- D. T. Reid, W. Sibbett, J. M. Dudley, L. P. Barry, B. Thomsen and J. D. Harvey, "Commercial semiconductor devices for two photon absorption autocorrelation of ultrashort light pulses," Appl. Opt. 37, 8142-8144 (1998). [CrossRef]
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