• 弹光效应反射向异性的反射

    Bireflectance film based on the photoelastic effect is a kind of anisotropic high reflection coating.

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  • 波导效应所引起应变灵敏度系数都光效应几个数量级因此可以忽略

    The strain sensitivity induced by the waveguide effect is several orders of magnitude smaller than that induced by the strain-optic effect, so it can be neglected.

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  • 讨论压电光效对(110),(111)(112)切割优化增益影响

    We also investigate the influence of the piezoelectric and elasto-optic effect on the optimum gain for (110), (111), (112) and their equivalent cuts.

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  • 运用折射率椭球分析晶体弹光效应,给出了三方晶系沿方向应力折射率的变化关系

    The relation between the stress along the optical axis of trigonal crystallographic system and the refractive index is established.

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  • 考虑BSO晶体性,效应压电效应光效应时,要求解耦合方程得到解析不可能的。

    However, due to presence of optical activity, the electrooptic, piezoelectric and photoelastic effects in BSO, it is difficult to get the analytical results.

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  • 利用有限元分析结果根据光效弹光效应理论,对气动热环境下红外头罩折射率进行数值计算

    Based on the theories of thermo-optical effect and elastic-optical effect, the refractive index field of the dome was numerically computed with the result of the finite element analysis.

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  • 实验研究该型长周期栅的压力温度特性;结合纤的效应、热光效应和耦合理论分析了实验结果

    The qualitative analysis of the related experimental results was carried out combining with photo-elastic effect, photo-thermal effect and coupled mode theory.

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  • 通过弹光效应周期伸缩光效应热膨胀效应分析得出应变灵敏度温度灵敏度。

    By analyzed the effects of fiber's spring, cycle flex, calorescence and the heat expand, the strain sensitivity and temperature sensitivity of FBG are obtained.

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  • 提出了一结构稳态实验装置利用石英效应实现了压调制,并完成了双实验。

    A kind of all-fiber structure optical bistable experiment device was designed. Based on elastic -optic effect of silica fiber we accomplished optical bistable experiment.

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  • 本文从热基本方程出发,理论上研究了非金属固体材料受激励超声时,穿透效应产生声波影响。

    The effect of optical penetration on laser thermoelastically- generated ultrasound in nonmetallic solids is studied theoretically on the basis of thermoelastic equations.

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  • 本文从热基本方程出发,理论上研究了非金属固体材料受激励超声时,穿透效应产生声波影响。

    The effect of optical penetration on laser thermoelastically- generated ultrasound in nonmetallic solids is studied theoretically on the basis of thermoelastic equations.

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