首页> 美国卫生研究院文献>Scientific Reports >Dynamic response of polar nanoregions under an electric field in a paraelectric KTa0.61Nb0.39O3 single crystal near the para-ferroelectric phase boundary
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Dynamic response of polar nanoregions under an electric field in a paraelectric KTa0.61Nb0.39O3 single crystal near the para-ferroelectric phase boundary

机译:顺电铁相边界附近的顺电KTa0.61Nb0.39O3单晶中电场作用下极性纳米区域的动态响应

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摘要

The dynamic response of polar nanoregions under an AC electric field was investigated by measuring the frequency dependence of the quadratic electro-optic (QEO) effect in a paraelectric KTa0.61Nb0.39O3 single crystal near the para-ferroelectric phase boundary (0 °C < T-Tc < 13 °C). The QEO coefficient R11 − R12 reached values as large as 5.96 × 10−15 m2/V2 at low frequency (500 Hz) and gradually decreased to a nearly stable value as the frequency increased to 300 kHz. Furthermore, a distortion of the QEO effect was observed at low frequency and gradually disappeared as R11 − R12 tended towards stability. The giant QEO effect in the KTa0.61Nb0.39O3 crystal was attributed to the dynamic rearrangement of polar nanoregions and its anomalous distortion can be explained by considering the asymmetric distribution of polar nanoregions.
机译:通过测量在准铁电相界附近(0°C <的顺电性KTa0.61Nb0.39O3单晶中的二次电光(QEO)效应的频率依赖性,研究了在交流电场下极性纳米区域的动态响应。 T-Tc <13°C)。在低频(500 Hz)时,QEO系数R11-R12达到高达5.96×10 −15 m 2 / V 2 的值,并且随着频率增加到300 kHz,逐渐减小到接近稳定的值。此外,在低频下观察到QEO效应的失真,并且随着R11→-R12趋于稳定而逐渐消失。 KTa0.61Nb0.39O3晶体中巨大的QEO效应归因于极性纳米区域的动态重排,其异常畸变可以通过考虑极性纳米区域的不对称分布来解释。

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