论文标题
在弹性各向异性候选中的触觉的平衡形态
Equilibrium morphology of tactoids in elastically anisotropic nematics
论文作者
论文摘要
我们通过使用$ \ mathbf {q} $ - 张量表示,研究列液晶中的二维触觉。 Maier-Saupe形式的散装自由能,并在$ \ Mathbf {q} $上限制了特征性约束,再加上弹性术语,以$ \ MATHBF {Q} $的立方顺序为止,用于了解各向异性锚定和Frank-soseen弹性对Nematic-Isotic-Isotropropropropropropropropropropropicic domains的形态的影响。此外,引入了体积限制,以稳定共存时任何大小的触觉。我们发现,各向异性锚定会导致界面厚度的差异,具体取决于界面处主管的相对方向,并且当引入各向异性时,接口成为双轴的切线对齐。对于负触觉,边界拓扑引起的表面缺陷随着弹性各向异性的增加而变得更加清晰。另一方面,通过参数研究其能量景观,我们发现表面缺陷并不代表阳性触觉中的最小能量构型。取而代之的是,散装中的Frank-Oseen弹性与各向异性锚定之间的相互作用产生了具有非圆形界面形态的半双相导演构型。最后,我们发现,对于生长触觉,导演配置的演变对自由能中包含的各向异性术语高度敏感,并且最小能量构型可能无法代表长时间动力学获得的触觉。
We study two dimensional tactoids in nematic liquid crystals by using a $\mathbf{Q}$-tensor representation. A bulk free energy of the Maier-Saupe form with eigenvalue constraints on $\mathbf{Q}$, plus elastic terms up to cubic order in $\mathbf{Q}$ are used to understand the effects of anisotropic anchoring and Frank-Oseen elasticity on the morphology of nematic-isotropic domains. Further, a volume constraint is introduced to stabilize tactoids of any size at coexistence. We find that anisotropic anchoring results in differences in interface thickness depending on the relative orientation of the director at the interface, and that interfaces become biaxial for tangential alignment when anisotropy is introduced. For negative tactoids, surface defects induced by boundary topology become sharper with increasing elastic anisotropy. On the other hand, by parametrically studying their energy landscape, we find that surface defects do not represent the minimum energy configuration in positive tactoids. Instead, the interplay between Frank-Oseen elasticity in the bulk, and anisotropic anchoring yields semi-bipolar director configurations with non-circular interface morphology. Finally, we find that for growing tactoids the evolution of the director configuration is highly sensitive to the anisotropic term included in the free energy, and that minimum energy configurations may not be representative of kinetically obtained tactoids at long times.