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Thermodynamics of polar anisotropy in morphotropic ferroelectric solid solutions

机译:各向异性铁电固溶体中极性各向异性的热力学

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摘要

A classical 2-4-6 Landau polynomial is used to describe the generic pseudo-binary composition-temperature (c-T) diagram of ferroelectric solid solutions that display a morphotropic boundary (MB). This polynomial is separated into an isotropic part that depends on the absolute value of the polarization and an anisotropic part that depends also on the direction of polarization. Composition and temperature are taken as external thermodynamic variables and the direction of the polarization vector is treated as an internal relaxing variable of the system. Conditions leading to the observation of stable rhombohedral (FR), tetragonal (FT) and orthorhombic (FO) phases in the c-T plane are determined. In the lowest-order approximation, the isothermal composition change producing the FR to FT transition at the MB is dictated by the condition that the polarization anisotropy energy vanishes. A small lifting of the orientational degeneracy of the polarization leads to differing phase diagram topologies wherein a stable FO phase may interleave the FR and FT phase fields along the MB line. The theory simultaneously accounts for disparate physical phenomena observed in morphotropic ferroelectric solid solutions, which include a sharp reduction in the ferroelectric domain size and the appearance of a dipole glass state connected with intermediate ferroelectric phases, and large extrinsic contributions to the electromechanical properties near the MB. The curving of the MB line, the nearly continuous transitions between adjacent ferroelectric phases and the change in the order of the paraelectric to ferroelectric transitions with composition also arise naturally in the theory.
机译:经典的2-4-6 Landau多项式用于描述显示出变质边界(MB)​​的铁电固溶体的一般伪二元组成-温度(c-T)图。该多项式被分成取决于极化的绝对值的各向同性部分和也取决于极化方向的各向同性部分。将成分和温度视为外部热力学变量,并将极化矢量的方向视为系统的内部松弛变量。导致在cT平面上观察到稳定的菱形(F R ),四方(F T )和正交晶(F O )相的条件确定。在最低阶近似下,MB处产生从F R 到F T 转变的等温成分变化是由极化各向异性能消失的条件决定的。偏振方向简并性的小提升会导致不同的相图拓扑,其中稳定的F O 相可能会交错F R 和F T 沿MB线的相位场。该理论同时解释了在同向铁电固溶体中观察到的不同物理现象,包括铁电畴尺寸的急剧减小以及与中间铁电相连接的偶极玻璃态的出现,以及对MB附近机电性能的巨大外部影响。 MB线的弯曲,相邻铁电相之间几乎连续的跃迁以及顺电至铁电跃迁的顺序随组成的变化在理论上也很自然地出现。

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