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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >The SHG-response of different phases in proton exchanged lithium niobate waveguides
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The SHG-response of different phases in proton exchanged lithium niobate waveguides

机译:质子交换铌酸锂波导中不同相的SHG响应

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Reflection second-harmonic generation from the polished waveguide end face is used to investigate the second-order nonlinear optical properties of as-exchanged and annealed proton-exchanged (PE) waveguides in different H/sub x/Li/sub 1-x/NbO/sub 3/ phases. A detailed correlation is done between the nonlinear properties, the processing conditions, the refractive index changes, and the optical losses of the waveguides. It is found that for the direct PE samples, where the /spl beta//sub 4/, /spl beta//sub 3/, and /spl beta//sub 1/ phases are generated at the surface, the nonlinearity in the guide is strongly reduced by more than 85% of its bulk value, while for waveguides prepared in the /spl beta//sub 2/ phase, the nonlinear coefficient is about 55% of the bulk one. A consequence is that the step-like /spl beta//sub i/-phase PE LiNbO/sub 3/ waveguides with large refractive index increase are advantageous for efficient SHG in Cherenkov configuration. The nonlinearity, strongly reduced after the initial proton exchange, is found to be restored and even increased after annealing. However, this apparent increase of the nonlinearity is accompanied by a strong degradation of the quality of the second-harmonic generation reflected beam in the region of initial waveguides due to beam scattering. The graded proton exchange technique and dilute melt proton exchange have been shown to produce high-quality waveguides with essentially undergraded nonlinear optical properties. It has been also shown that the nonlinear properties of annealed proton exchanged LiNbO/sub 3/ waveguides can be effectively recovered by the reverse proton exchange technique. The results obtained are important for the design, fabrication, and optimizing of guided-wave nonlinear optical devices in LiNbO/sub 3/.
机译:使用抛光波导端面的反射二次谐波生成来研究在不同H / sub x / Li / sub 1-x / NbO中交换和退火的质子交换(PE)波导的二阶非线性光学特性/ sub 3 /个阶段。在非线性特性,加工条件,折射率变化和波导的光损耗之间进行了详细的关联。已发现,对于直接PE样品,在表面生成/ spl beta // sub 4 /,/ spl beta // sub 3 /和/ spl beta // sub 1 /的相中,其非线性是波导被大大降低了其体积值的85%以上,而对于以/ spl beta // sub 2 /相制备的波导,其非线性系数约为体积1的55%。结果是,具有大的折射率增加的阶梯状/ spl beta // sub i /相PE LiNbO / sub 3 /波导有利于切伦科夫构造中的有效SHG。发现在最初的质子交换后强烈减少的非线性在退火后得以恢复甚至增加。然而,由于光束散射,非线性的这种明显增加伴随着在初始波导区域中二次谐波产生反射光束的质量大大降低。梯度质子交换技术和稀薄的熔融质子交换已被证明可以生产出高质量的波导,其非线性光学特性会大大降低。还已经表明,可以通过反向质子交换技术有效地恢复退火的质子交换的LiNbO / sub 3 /波导的非线性特性。获得的结果对于LiNbO / sub 3 /中的导波非线性光学器件的设计,制造和优化很重要。

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