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Low-frequency Raman scattering study of the ferroelectric phase transition in the DKDP crystal

机译:DKDP晶体中铁电相变的低频拉曼散射研究

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摘要

The low-frequency Raman scattering spectra of the DKDP ferroelectric crystal are studied in the temperature range 30-393 K. At temperatures above 150 K, the Raman spectra exhibit a central peak which reflects the lattice relaxation susceptibility. The width and integrated intensity of the central peak are derived from the experimental spectra. The critical slowing down of the relaxation response predicted by the Ginzburg-Landau-Devonshire theory is observed throughout the temperature range in which the central peak persists. Its integrated intensity does not, however, follow the predictions of the theory and reveals a strong temperature dependence in the ferroelectric phase and a weaker dependence in the paraphase. It is shown that the thermal activation law describes well the temperature dependence of the intensity of the central peak. An interpretation is proposed according to which the intensity of order parameter fluctuations is related to the activation barrier whose height is proportional to the deviation from the phase transition temperature.
机译:在30-393 K的温度范围内研究了DKDP铁电晶体的低频拉曼散射光谱。在150 K以上的温度下,拉曼光谱表现出一个中心峰,反映了晶格弛豫的敏感性。中心峰的宽度和积分强度由实验光谱得出。在整个中心峰持续存在的温度范围内,观察到了由Ginzburg-Landau-Devonshire理论预测的弛豫响应的严重减慢。但是,它的积分强度没有遵循理论的预测,显示出在铁电相中强烈的温度依赖性和在顺相中较弱的依赖性。结果表明,热活化定律很好地描述了中心峰强度的温度依赖性。提出了一种解释,根据该解释,阶跃参数波动的强度与激活势垒有关,该激活势垒的高度与相对于相变温度的偏差成比例。

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