Effect of hydrostatic pressure and longitudinal electric field on phase transitions and thermodynamic characteristics of quasione-dimensional CsH2PO4 ferroelectric

A. Vdovych, I. R. Zachek, R. Levitskii
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引用次数: 2

Abstract

We propose a two-sublattice proton ordering model for the quasione-dimensional CsH$_2$PO$_4$ ferroelectric with hydrogen bonds, which takes into account linear on lattice strains $u_1$, $u_2$, $u_3$ and $u_5$ contribution to the energy of proton subsystem. The model also takes into account the dependence of effective dipole moments of pseudospins on the order parameters, which enables one to agree the effective dipole moments in paraelectric and ferroelectric phases. Within this model in two-particle cluster approximation on short-range interactions and in the mean field approximation on long-range interactions, there is investigated the behaviour of spontaneous polarization, longitudinal dielectric permittivity and molar heat capacity under the action of hydrostatic pressure and longitudinal electric field. The phase transition into antiferroelectric phase under high pressures is explained. The character of smearing of the paraelectric-ferroelectric phase transition as well as suppression of the antiferroelectric phase at the presence of electric field is studied.
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静水压力和纵向电场对准一维CsH2PO4铁电相变和热力学特性的影响
考虑到$u_1$、$u_2$、$u_3$和$u_5$晶格应变对质子子系统能量的线性贡献,提出了准一维含氢键的CsH$_2$PO$_4$铁电体的双亚晶格质子排序模型。该模型还考虑了伪自旋的有效偶极矩对序参量的依赖性,从而使拟电相和铁电相的有效偶极矩一致。在该模型中,在近程相互作用的双粒子团近似和远距离相互作用的平均场近似下,研究了静水压力和纵向电场作用下的自发极化、纵向介电常数和摩尔热容的行为。解释了高压下的反铁电相转变。研究了电场作用下顺电-铁电相变的涂抹特性以及对反铁电相变的抑制。
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