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All-optical wavelength tuning in Ti:PPLN Solc filter via the photorefractive effect

机译:通过光折变效应在Ti:PPLN Solc滤光片中进行全光波长调谐

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摘要

We demonstrate fine-wavelength tuning of a periodically poled Ti:LiNbO_(3) (Ti:PPLN) Solc filter by use of the photorefractive (PR) effect. The center wavelength of a Ti:PPLN Solc filter is controlled by the PR effect, which is induced by second-harmonic generation (SHG). The refractive index change caused by the PR effect is calculated from the measured shift in center wavelength from the Ti:PPLN Solc filter. The experimental results show that all-optical fine-wavelength tuning in a Ti:PPLN Solc filter is possible by the use of a second-order nonlinear effect and that a Ti:PPLN waveguide has much higher resistance to PR damage than a Ti:LiNbO_(3) waveguide. The measured wavelength tuning rate as a function of the pump beam power is about -0.033 nm/mW.
机译:我们通过光折射(PR)效应演示了周期性极化的Ti:LiNbO_(3)(Ti:PPLN)Solc滤波器的微波长调谐。 Ti:PPLN Solc滤光片的中心波长受PR效应控制,PR效应是由二次谐波产生(SHG)引起的。由PR效应引起的折射率变化是根据Ti:PPLN Solc滤光片测得的中心波长偏移计算得出的。实验结果表明,通过使用二阶非线性效应,可以在Ti:PPLN Solc滤波器中进行全光精细波长调谐,并且与Ti:LiNbO_相比,Ti:PPLN波导具有更高的抗PR损坏能力。 (3)波导。测得的作为泵浦光束功率的函数的波长调谐速率约为-0.033 nm / mW。

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