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Ferroelectric AgNa(NO2)2 crystals as novel highly efficient nonlinear optical material: Phase matched second harmonic generation driven by a spontaneous and electric field induced polarizations

机译:铁电agNa(NO2)2晶体作为新型高效非线性光学材料:由自发和电场诱导极化驱动的相位匹配二次谐波产生

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摘要

Paper reports the second harmonic generation(SHG) in ferroelectric AgNa ( NO 2 ) 2 crystals being driven by the spontaneous and electric field induced polarizations. Obtained results are interpreted within the phenomenological theory which considers the free energy describing the interaction between the spontaneous or electric field induced polarizations and spatially inhomogeneous electric polarizations resulted from propagating optical waves. Relatively high magnitudes of the effective second order nonlinear optical (NLO) susceptibilities in these crystals are combined with several phase matching geometries which allows to consider them as high-performance materials for potential NLO applications, such as parametric generation and amplification, frequency doubling, or other applications that require high-efficient frequency conversion. In addition, an anomalously large response of NLO susceptibilities with respect to an applied electric field has been found in the vicinity of the Curie point. This may also have a number of applications, especially in those devices where an efficient tunable control of SHG intensity is demanded.
机译:论文报道了铁电AgNa(NO 2)2晶体在自发和电场感应的极化作用下产生二次谐波(SHG)。在现象学理论中解释了获得的结果,该理论考虑了自由能,该自由能描述了自发或电场感应的极化与传播光波导致的空间不均匀极化之间的相互作用。这些晶体中相对较高的有效二阶非线性光学(NLO)磁化率与几种相位匹配几何形状相结合,可以将它们视为潜在NLO应用的高性能材料,例如参数生成和放大,倍频或其他需要高效频率转换的应用。另外,已经在居里点附近发现了NLO磁化率对所施加电场的反常的大响应。这也可能有许多应用,尤其是在需要有效调节SHG强度的设备中。

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