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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Study of Noncollinear Quasi-Phase Matching Optical Parametric Amplification with Group-Velocity Matching Based on Periodically Poled Crystals
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Study of Noncollinear Quasi-Phase Matching Optical Parametric Amplification with Group-Velocity Matching Based on Periodically Poled Crystals

机译:基于周期极化晶体的群速度匹配的非共线准相位匹配光学参量放大研究

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摘要

The properties of noncollinear optical parametric amplification (NOPA) based on quasi-phase matching of periodically poled crystals are investigated, under the condition that the group velocity matching (GVM) of the signal and idler pulses is satisfied. Our study focuses on the dependence of the gain spectrum upon the noncollinear angle, crystal temperature, and crystal angle with periodically poled KTiOPO_4 (PPKTP), periodically poled LiNbO_3 (PPLN), and periodically poled LiTaO_3 (PPLT), and the NOPA gain properties of the three crystals are compared. Broad gain bandwidth exists above 85 nm at a signal wavelength of 800 nm with a 532 nm pump pulse, with proper noncollinear angle and grating period at a fixed temperature for GVM. Deviation from the group-velocity-matched noncollinear angle can be compensated by accurately tuning the crystal angle or temperature with a fixed grating period for phase matching. Moreover, there is a large capability of crystal angle tuning.
机译:在满足信号和空载脉冲的群速度匹配(GVM)的条件下,研究了基于周期性极化晶体准相位匹配的非共线光学参量放大(NOPA)的特性。我们的研究集中在周期性极化KTiOPO_4(PPKTP),周期性极化LiNbO_3(PPLN)和周期性极化LiTaO_3(PPLT)时增益谱对非共线角,晶体温度和晶体角的依赖性以及NOPA的增益特性比较这三个晶体。对于GVM,在532 nm泵浦脉冲的800 nm信号波长下,在85 nm以上具有较宽的增益带宽,并且在固定温度下具有适当的非共线角度和光栅周期。与组速度匹配的非共线角度的偏差可以通过使用固定的光栅周期精确地调整晶体角度或温度进行相位匹配来补偿。而且,具有大的晶角调谐能力。

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