DocumentCode :
1199673
Title :
Highly efficient high-repetition-rate tunable all-solid-state optical parametric oscillator
Author :
Xiaoyuan Peng ; Lei Xu ; Asundi, A.
Author_Institution :
Photonics Program, Nanyang Technol. Univ., Singapore
Volume :
41
Issue :
1
fYear :
2005
Firstpage :
53
Lastpage :
61
Abstract :
A compact highly efficient intracavity optical parametric oscillator (OPO) is demonstrated by placing an OPO cavity in a diode-pumped Q-switched Nd:YLF laser. By taking into account the thermal and energy upconversion transfer effects of Nd:YLF, a power scaling model is set up to optimize and design a fundamental mode diode-pumped Nd:YLF laser. The linearly polarized Nd:YLF laser in the 1053-nm line generates 6.5, 9.2, and 11.9 W average power in TEM/sub 00/ mode at the repetition rates of 1, 2, and 4.5 kHz, respectively. A highly efficient OPO signal output is realized by using an optimized cavity design. We obtain OPO average signal powers of more than 1 W over a broadband continuous tuning range from 1650 to 2100 nm at the repetition rate of 1 kHz. The OPO signal pulsewidth is 10 ns at 1 kHz. Signal energies of 2.5, 1.55, and 0.67 mJ per pulse are produced at the repetition rates of 1, 2, and 4.5 kHz, respectively. The maximum OPO signal energy of 2.5 mJ per pulse is obtained at 1900 nm, where the pump energy is 6 mJ per pulse and the pump-to-signal efficiency is 42%. A maximum average signal power of 4.1 W is generated at 3.5 kHz.
Keywords :
Q-switching; laser cavity resonators; laser modes; laser tuning; neodymium; optical parametric oscillators; optical pumping; semiconductor device models; solid lasers; 0.67 mJ; 1 kHz; 1.55 mJ; 1053 nm; 11.9 W; 1650 to 2100 nm; 2 kHz; 2.5 mJ; 3.5 kHz; 4.1 W; 4.5 kHz; 6 mJ; 6.5 W; 9.2 W; LiYF4:Nd; Nd:YLF laser; OPO cavity; Q-switched laser; YLF:Nd; all-solid-state optical parametric oscillator; continuous tuning; diode-pumped laser; energy upconversion transfer effects; fundamental mode laser; high-repetition-rate optical parametric oscillator; highly efficient optical parametric oscillator; intracavity optical parametric oscillator; linearly polarized laser; optimized cavity design; power scaling model; thermal transfer effects; tunable optical parametric oscillator; Design optimization; Diodes; Laser modes; Nonlinear optics; Optical design; Optical pumping; Oscillators; Power generation; Power lasers; Tunable circuits and devices; Diode-pumped solid-state (DPSS) laser; Nd:YLF; midinfrared; optical parametric oscillators (OPO); tunable laser;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2004.837952
Filename :
1375033
Link To Document :
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