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Optimization of electrooptic and pieozoelectric coupling effects in tetragonal relaxor-PT ferroelectric single crystals

机译:四方弛豫-PT铁电单晶中电光和压电耦合效应的优化

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摘要

The electrooptic and piezoelectric coupling effects in tetragonal relaxor-based ferroelectric 0.62Pb(Mg1/3Nb2/3)O3-0.38PbTiO3 (PMN-0.38PT) and 0.88Pb(Zn1/3Nb2/3)O3-0.12PbTiO3 (PZN-0.12PT) single-domain crystals have been analyzed by the coordinate transformation. The orientation dependence of the electrooptic and half-wave voltage was calculated based on the full sets of refractive indices, electrooptic and piezoelectric coefficients. The optimum orientation cuts for achieving the best electrooptic coefficient and half-wave voltage were found. The lowset half-wave voltage is only 76 V for the PMN-0.38PT single-domain crystal. Compared to commonly used electrooptic crystal LiNbO3, tetragonal relaxor-PT ferroelectric single-domain crystals are much superior for optical modulation applications because of their much higher linear electrooptic coefficients and substantially lower half-wave voltages when the piezoelectric strain influence is considered.
机译:四方弛豫基铁电体0.62Pb(Mg1 / 3Nb2 / 3)O3-0.38PbTiO3(PMN-0.38PT)和0.88Pb(Zn1 / 3Nb2 / 3)O3-0.12PbTiO3(PZN-0.12PT)的电光和压电耦合效应)已经通过坐标变换分析了单畴晶体。根据整套折射率,电光和压电系数,计算电光和半波电压的方向依赖性。找到了用于获得最佳电光系数和半波电压的最佳取向切口。 PMN-0.38PT单域晶体的低端半波电压仅为76V。与常用的电光晶体LiNbO3相比,四方弛豫PT铁电单畴晶体在光学调制应用中要优越得多,因为考虑到压电应变影响时,它们的线性电光系数要高得多,而半波电压要低得多。

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