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准相位匹配扇形光栅铌酸锂光波导倍频绿光输出
引用本文:于建,薛挺,杨天新,耿凡,纪磊,李世忱.准相位匹配扇形光栅铌酸锂光波导倍频绿光输出[J].光学学报,2002,22(8):21-923.
作者姓名:于建  薛挺  杨天新  耿凡  纪磊  李世忱
作者单位:1. 天津大学精密仪器与光电子工程学院,光电信息技术科学教育部重点实验室,天津,300072
2. 津航技术物理研究所,天津,300192
基金项目:天津市重点自然科学基金 (99380 0 71),教育部科学技术研究重点项目 (0 2 0 4 2 )资助课题
摘    要:采用外加电场极化方式对具有扇形光栅的 0 .5mm厚Z切铌酸锂晶体进行极化反转 ,制成了退火质子交换光波导。极化反转周期为 5 .8μm~ 6 .2 μm ,采用Nd∶YAG激光器输出的 1.0 6 4 μm连续激光为基频光波 ,实现了0 .5 32 μm倍频绿光输出 ,相互作用长度为 4mm ,耦入波导的基频光波功率为 10mW ,获得了 2 0 μW的绿色倍频光输出 ,归一化转换效率为 12 5 % (W·cm2 )。

关 键 词:倍频绿光输出  铌酸锂晶体  光波导  准相位匹配  扇形光栅  极化反转周期
收稿时间:2001/9/24

Fan-out Grating Quasi-Phase-Matched Second Harmonic Generation in LiNbO3 Waveguide
Yu Jian Xue Ting Yang Tianxin Geng Fan Ji Lei Li Shichen ,College of Precision Instrument and Optoelectronics Engineering,Laboratory of Optoelectronics Information Technical Science,Education Mi.Fan-out Grating Quasi-Phase-Matched Second Harmonic Generation in LiNbO3 Waveguide[J].Acta Optica Sinica,2002,22(8):21-923.
Authors:Yu Jian Xue Ting Yang Tianxin Geng Fan Ji Lei Li Shichen  College of Precision Instrument and Optoelectronics Engineering  Laboratory of Optoelectronics Information Technical Science  Education Mi
Institution:Yu Jian 1) Xue Ting 1) Yang Tianxin 1) Geng Fan 2) Ji Lei 1) Li Shichen 1) 1),College of Precision Instrument and Optoelectronics Engineering,Laboratory of Optoelectronics Information Technical Science,Education Mi
Abstract:The quasi phase matched second harmonic generation in periodically poled lithium niobate (PPLN) Z cut 0.5 mm thick annealed proton exchanged (APE) waveguide with fan grating was realized by applying an external field poling. The grating period ranges inverted from 5.8 μm~6.2 μm and the interaction length was 4 mm. Used a CW Nd:YAG laser as a fundamental beam source at 1.064 μm, input power in waveguide was 10 mW. The green SHG of 20 μW at 0.532 μm was achieved at 125%/(W·cm 2) normalized conversion efficiency in PPLN waveguide.
Keywords:LiNbO  3  optical waveguide  quasi  phase  matched  second harmonic generation  fan  out grating  periodically poled lithium niobate (PPLN)
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