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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Disclination loops, standing alone and around solid particles, in nematic liquid crystals
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Disclination loops, standing alone and around solid particles, in nematic liquid crystals

机译:向列液晶中的旋错环,独立存在并围绕固体颗粒

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A suspended particle with specific director anchoring on its surface introduces a complex distortion field in a nematic liquid crystal matrix. Topological defects—disclination loops, boojums, and hedgehogs, are needed to match the director near the particle surface with that at the far distance, which is determined by boundary conditions on the sample. This paper analyzes the elastic energy and stability of a singular loop of wedge disclination and the first-order transition of the radial hedgehog into a wide singular loop, driven by an external magnetic field. The far field of distortions, created by a ``Saturn ring'' of disclination around the spherical radial particle, allows one to calculate the potential of interaction between such particles and with the surface of the liquid crystal. Particles are repelled from each other and from the rigidly anchored surface with the potential U~1/r3. If the sample surface has soft anchoring, the particle is attracted to it at close distances and is repelled, if beyond the anchoring coherence length xi w. Several experiments to test these conclusions are suggested.
机译:在其表面上锚定有特定指向矢的悬浮粒子会在向列液晶矩阵中引入复杂的畸变场。需要拓扑缺陷-散乱环,布胡姆和刺猬,以使粒子表面附近的指向矢与远处的指向矢匹配,该距离由样本的边界条件决定。本文分析了楔形错位奇异环的弹性能量和稳定性,以及由外部磁场驱动的径向刺猬向宽奇异环的一阶跃迁。由球形径向粒子周围旋错的``土星环''产生的远场畸变场,使人们可以计算出此类粒子之间以及与液晶表面相互作用的可能性。粒子彼此之间以及刚性锚定表面之间的排斥力为U〜1 / r3。如果样品表面具有软锚定,则如果超出锚定相干长度xi w,粒子将被近距离吸引并被排斥。建议进行一些实验来检验这些结论。

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