Osipov M A, Gorkunov M V, Gleeson H F, Jaradat S
Department of Mathematics, University of Strathclyde, Glasgow G1 1XH, UK.
Eur Phys J E Soft Matter. 2008 Aug;26(4):395-404. doi: 10.1140/epje/i2008-10339-x.
A molecular theory of the ferroelectric smectic C* phase has been developed using the simple model of a chiral molecule composed of a uniaxial core and a pair of off-center nonparallel dipoles which determine molecular chirality and polarity. The interaction between uniaxial cores is modeled by a rather general effective potential which can be used to describe smectic materials with both conventional and anomalously weak layer contraction in the smectic C* phase. Spontaneous polarization, tilt, and layer spacing are calculated numerically as functions of temperature, and it is shown that the variation of the polarization generally deviates from that of the tilt angle. It is shown that this deviation is more pronounced in smectic materials tilting with low layer contraction which corresponds to existing experimental data. The model has been used to reproduce qualitatively the experimental data for polarization, tilt and layer spacing for two similar mixtures exhibiting conventional and anomalously weak layer contraction. The polarization and the tilt are also calculated in the case when the smectic A-smectic C* transition is characterized by the biaxial primary order parameter.
利用由单轴核心和一对偏心非平行偶极子组成的手性分子的简单模型,已发展出一种铁电近晶C相的分子理论,该偶极子决定分子的手性和极性。单轴核心之间的相互作用由一个相当通用的有效势来模拟,该有效势可用于描述在近晶C相中具有常规和异常弱层收缩的近晶材料。作为温度的函数,数值计算了自发极化、倾斜度和层间距,结果表明极化的变化通常偏离倾斜角的变化。结果表明,这种偏差在具有低收缩层倾斜的近晶材料中更为明显,这与现有实验数据相符。该模型已被用于定性地重现两种表现出常规和异常弱层收缩的相似混合物的极化、倾斜度和层间距的实验数据。当近晶A-近晶C*转变以双轴一级序参量为特征时,还计算了极化和倾斜度。