Generation of watt level mid-infrared wavelengths using intra-cavity ZnGeP2 OPO within a 2.1μm Ho:YAG laser

被引:2
|
作者
Tan, L. H. [1 ]
Phua, P. B. [1 ]
机构
[1] DSO Natl Labs, Singapore 118230, Singapore
关键词
Ho:YAG laser; ZGP; Mid-infrared; Intra-cavity OPO; Watt Level; Nonlinear Frequency Conversion; OPTICAL PARAMETRIC OSCILLATOR;
D O I
10.1117/12.876248
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We report on watt level mid-infrared (MIR) wavelength generation using intra-cavity ZnGeP(2) (ZGP) optical parametrical oscillator (OPO) within a 2.1 mu m Ho:YAG laser. A compact cavity of less than 50cm was designed for the intra-cavity OPO setup. With the same laser setup, watt level of both 2.1 mu m and MIR wavelengths were generated. An average output power of > 20W of 2.1 mu m and > 1W of MIR wavelength at 10 KHz repetition rate were achieved from a 46W Tm fiber pump laser. The Ho:YAG laser was resonantly pumped by a 1.9 mu m Tm:fiber laser and nanosecond pulses were generated using an electro-optics q-switch modulator. With the use of a lambda/4 waveplate and a thin film polarizer, a variable output coupler for the Ho:YAG laser was formed where we could optimize the output coupling to achieve 21W of 2.1 mu m wavelength. MIR wavelengths were generated using commercial ZGP crystals from Inrad. A HR mirror for the MIR wavelengths was inserted into the Ho:YAG cavity to form the intra-cavity ZGP OPO. The rear mirror of the Ho:YAG cavity act as the output coupler with R=70% for the MIR wavelengths. Optimizing of the MIR generation was done by tuning the phase-matching angle of the ZGP and adjusting the cavity length of the OPO. A preliminary result of the intra-cavity ZGP OPO generates > 1W of MIR wavelength.
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页数:6
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