首页> 外文会议>Conference on nonlinear frequency generation and conversion: Materials, devices, and applications VIII; 20090127-29; San Jose, CA(US) >Experimental Investigations of Second Harmonic Generation in Germanium-doped Optical Glass Fibers
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Experimental Investigations of Second Harmonic Generation in Germanium-doped Optical Glass Fibers

机译:掺锗光学玻璃纤维中二次谐波产生的实验研究

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Experiments were carried out in order to investigate Second Harmonic Generation (SHG) in germanium-doped optical glass fibers, relying on a mode-locked Q-switched neodymium yttrium aluminum garnet (Nd:YAG) laser with high peak power intensity. The preparation or writing conditions for optical fibers were investigated. SHG was observed successfully under a synchronous pump of the fundamental infrared and seeding green lights, with a maximum of 82 μW from second harmonic generation being observed in the optical fiber from a 60 mW input, corresponding to a conversion efficiency of 0.14%. The pump laser used in the experiments was a Nd:YAG laser, operated Q-switched and mode-locked at 1064 nm. The laser delivered approximately 100 ps mode-locked pulses at a 75.6 MHz repetition rate, modulated by a 2 kHz frequency Q-switched pulse envelope of 260 nanoseconds' duration (Full Width Half Maximum or FWHM).
机译:为了研究掺锗的光学玻璃纤维中的第二谐波产生(SHG),采用了具有高峰值功率强度的锁模调Q钕钇铝钇铝石榴石(Nd:YAG)激光器进行了实验。研究了光纤的制备或写入条件。在基本红外光和绿色种子光的同步泵浦下成功观察到SHG,在60 mW输入的光纤中观察到来自二次谐波的最大值为82μW,对应的转换效率为0.14%。实验中使用的泵浦激光器是Nd:YAG激光器,在1064 nm处进行Q开关和锁模操作。激光器以75.6 MHz的重复频率传送了大约100 ps的锁模脉冲,并由持续时间为260纳秒的2 kHz频率Q开关脉冲包络(全宽半最大值或FWHM)调制。

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