Study of Dielectric Properties and Ultrasonic Attenuation in KDP-Type Ferroelectrics

V. S. Bist, N. S. Panwar
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引用次数: 0

Abstract

The soft mode dynamical model has been used to study dielectric properties and ultrasonic attenuation in KDP-type ferroelectric crystals. The model Hamiltonian proposed by Blinc and Zeks has been modified by considering lattice anharmonicity up to fourth-order. The correlations appearing in the dynamical equation have been evaluated using double-time thermal retarded Green’s functions method and Dyson’s equation. Without any decoupling, the higher order correlations, appearing in the dynamical equation, have been evaluated using the renormalized Hamiltonian. The expressions for collective frequencies, width, dielectric constant, ultrasonic attenuation, and tangent loss have been calculated. The dielectric properties and ultrasonic attenuation strongly depend on the relaxational mode behavior of stochastic motion of H2PO4 group in KDP-type ferroelectrics. By fitting model values of physical quantities, the temperature dependence of and for different value of four-body coupling coefficient and dielectric constant and loss tangent has been calculated. The calculated and observed results have been found in good agreement.
kdp型铁电体介电性能及超声衰减研究
采用软模动力学模型研究了kdp型铁电晶体的介电特性和超声衰减。通过考虑格的四阶非调和性,对Blinc和Zeks提出的模型hamilton进行了修正。用双时间延迟格林函数法和戴森方程对动力学方程中出现的相关性进行了评价。在没有任何解耦的情况下,使用重归一化哈密顿量对出现在动力学方程中的高阶相关性进行了评估。计算了集合频率、宽度、介电常数、超声衰减和切线损耗的表达式。在kdp型铁电体中,H2PO4基团的介电性能和超声衰减强烈依赖于其随机运动的弛豫模式行为。通过对物理量模型值的拟合,计算了四体耦合系数与介电常数和损耗正切值不同时和对温度的依赖关系。计算结果与观测结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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