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近晶膜中涨落诱导相互作用振幅的表面效应。

Surface effects on the amplitude of fluctuation-induced interactions in smectic films.

作者信息

de Oliveira I N, Lyra M L

机构信息

Departamento de Física, Universidade Federal de Alagoas, 57072-970 Maceió Alagoas, Brazil.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2002 May;65(5 Pt 1):051711. doi: 10.1103/PhysRevE.65.051711. Epub 2002 May 24.

Abstract

Within a quadratic functional integral approach, we investigate the role played by surface terms in the fluctuation-induced surface-surface interaction of free standing smectic liquid crystals. We show that the typical 1/l decay of the Casimir-type contribution to the free energy of a film with thickness l is replaced by a faster 1/l3 decay at a characteristic surface tension. An intermediate 1/l2 decay can also take place for specific surface parameters with unlike boundary conditions. In all the investigated cases, a repulsive long-range force appears only for mixed boundary conditions with strong anchoring at one surface and weak anchoring at the opposite one. Further, the amplitude of the thermal Casimir energy, besides being influenced by the applied surface tension, depicts a nonmonotonic dependence on the coupling between the outermost film layers, reflecting a crossover between strong and weak anchoring regimes.

摘要

在二次泛函积分方法框架内,我们研究了表面项在自由悬浮近晶型液晶的涨落诱导表面 - 表面相互作用中所起的作用。我们表明,对于厚度为(l)的薄膜,卡西米尔型对自由能贡献的典型(1/l)衰减在特征表面张力下被更快的(1/l^3)衰减所取代。对于具有不同边界条件的特定表面参数,也可能出现中间的(1/l^2)衰减。在所有研究的情况下,只有在一个表面强锚定而在相对表面弱锚定的混合边界条件下才会出现排斥性长程力。此外,热卡西米尔能量的幅度除了受外加表面张力影响外,还呈现出对外层薄膜层之间耦合的非单调依赖性,反映了强锚定和弱锚定 regime 之间的转变。

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