Lishchuk S V, Care C M
Materials Research Institute, Sheffield Hallam University, Howard Street, Sheffield S1 1WB, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Jul;70(1 Pt 1):011702. doi: 10.1103/PhysRevE.70.011702. Epub 2004 Jul 2.
We investigate theoretically, and numerically, the shape of a droplet of an isotropic fluid immersed in a nematic liquid crystal in the presence of an interfacial layer of surfactant; the droplet size is assumed to be small compared to the extrapolation length of the nematic and homeotropic alignment is favored by the anchoring energy at the nematic-isotropic interface. In a certain range of droplet sizes, the droplets are found to be lens shaped with the rotation axis aligned along the imposed director field and the aspect ratio dependent upon the ratio of anchoring strength and surface tension coefficients. For anchoring strengths large compared to the surface tension, the curvature of the edge of lens is controlled by the bending rigidity of surfactant.
我们从理论和数值上研究了在存在表面活性剂界面层的情况下,浸没在向列型液晶中的各向同性流体液滴的形状;假设液滴尺寸与向列型的外推长度相比很小,并且向列型 - 各向同性界面处的锚定能有利于垂直排列。在一定的液滴尺寸范围内,发现液滴呈透镜状,其旋转轴沿外加指向矢场排列,纵横比取决于锚定强度与表面张力系数的比值。对于与表面张力相比很大的锚定强度,透镜边缘的曲率由表面活性剂的弯曲刚度控制。