Pereira Maria S S, de Oliveira Italo N, Lyra Marcelo L
Instituto de Física, Universidade Federal de Alagoas, 57072-970 Maceió, Alagoas, Brazil.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Dec;84(6 Pt 1):061706. doi: 10.1103/PhysRevE.84.061706. Epub 2011 Dec 28.
We study the smectic to nematic (SmA-N) phase transition taking place at the center of a free-standing film that exhibits enhanced surface order due to the anchoring promoted by a surrounding gas. The usual McMillan mean-field approach predicts that the SmA-N transition in bulk samples can be continuous or discontinuous (first or second order) depending on the molecular geometry, with a tricritical point separating these two regimes. Here we show that the additional orientational order imposed by the surface anchoring stabilizes the surface-induced smectic and nematic phases, leading to the breakdown of the tricritical point and to the emergence of a critical end point. We report the full phase diagram, which depicts four distinct structures as the film thickness is reduced.
我们研究了在自支撑薄膜中心发生的近晶相到向列相(SmA-N)的相变,该薄膜由于周围气体促进的锚定作用而呈现出增强的表面有序性。通常的麦克米兰平均场方法预测,块状样品中的SmA-N相变可以是连续的或不连续的(一级或二级),这取决于分子几何结构,有一个三临界点将这两种情况区分开来。在这里我们表明,表面锚定施加的额外取向有序稳定了表面诱导的近晶相和向列相,导致三临界点的崩溃和一个临界端点的出现。我们报告了完整的相图,该相图描绘了随着薄膜厚度减小而出现的四种不同结构。