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Vibrometry Analysis of Electrooptical Coupling near Piezoelectric Resonance

机译:压电谐振下电光耦合的振动分析

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The electrooptic response of crystals becomes attenuated in the megahertz or higher frequencies where it is of the most use for communication systems. This research explores new possibilities of improved electrooptic interaction at high frequencies, discovered as a result of coupled electrooptic effects near selected piezoelectric resonances. Results suggest that for electrooptics the key to a large interaction at high frequencies is the gradient of the strain in a modulated crystal and the acceleration of the accompanying lattice waves. While strains tend to be damped, acceleration of the lattice wave retains its amplitude at high frequencies. This interaction is studied by a high frequency Laser Doppler Vibrometer and by numerical finite element analysis modeling using COMSOL. PMN-PT crystal was the primary material studied due to its large piezoelectric coupling and electrooptic coefficients. The dynamic displacement of the samples was measured over a broad range of frequencies, including the fundamental resonant modes and higher order harmonics where the mode structure becomes complex and not well described by existing analytical models..
机译:晶体的电光响应在兆赫兹或更高的频率处变得衰减,这在通信系统中最有用。这项研究探索了在选定的压电共振附近耦合电光效应的结果,从而发现了改善高频电光相互作用的新可能性。结果表明,对于电光而言,高频相互作用的关键是调制晶体中的应变梯度以及伴随的晶格波的加速度。尽管应变趋于衰减,但晶格波的加速度在高频时仍保持其振幅。通过高频激光多普勒振动计和使用COMSOL的数值有限元分析模型研究了这种相互作用。 PMN-PT晶体由于其大的压电耦合和电光系数而成为研究的主要材料。样品的动态位移是在很宽的频率范围内测量的,包括基本共振模式和高次谐波,其中模式结构变得复杂,现有分析模型无法很好地描述。

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