Gorkunov M V, Osipov M A, Lagerwall J P F, Giesselmann F
Department of Mathematics, University of Strathclyde, Glasgow G1 1XH, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Nov;76(5 Pt 1):051706. doi: 10.1103/PhysRevE.76.051706. Epub 2007 Nov 19.
We develop a molecular-statistical theory of the smectic-A-smectic-C transition which is described as a transition of the order-disorder type. The theory is based on a general expansion of the effective interaction potential and employs a complete set of orientational order parameters. All the order parameters of the smectic-C phase including the tilt angle are calculated numerically as functions of temperature for a number of systems which correspond to different transition scenario. The effective interaction potential and the parameters of the transition are also calculated for specific molecular models based on electrostatic and induction interaction between molecular dipoles. The theory successfully reproduces the main properties of both conventional and so-called "de Vries-type" smectic liquid crystals, clarifies the origin of the anomalously weak layer contraction and describes the tricritical behavior at the smectic-A-smectic-C transition. The "de Vries behavior," i.e., anomalously weak layer contraction is also obtained for a particular molecular model based on interaction between longitudinal molecular dipoles. A simple phenomenological model is presented enabling one to obtain explicit expressions for the layer spacing and the tilt angle which are used to fit the experimental data for a number of materials.
我们发展了一种关于近晶A-近晶C转变的分子统计理论,该转变被描述为有序-无序型转变。该理论基于有效相互作用势的一般展开,并采用了一套完整的取向序参量。对于一些对应不同转变情形的体系,数值计算了近晶C相的所有序参量,包括倾斜角随温度的变化关系。基于分子偶极子间的静电和感应相互作用,针对特定分子模型还计算了有效相互作用势和转变参数。该理论成功再现了传统和所谓“德弗里斯型”近晶型液晶的主要性质,阐明了异常微弱的层收缩的起源,并描述了近晶A-近晶C转变处的三临界点行为。基于纵向分子偶极子间的相互作用,对于一个特定分子模型也得到了“德弗里斯行为”,即异常微弱的层收缩。提出了一个简单的唯象模型,能得到层间距和倾斜角的显式表达式,用于拟合多种材料的实验数据。