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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Magnetic anisotropic colloids in nematic liquid crystals: Fluctuating dynamics simulated by multi-particle collision dynamics
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Magnetic anisotropic colloids in nematic liquid crystals: Fluctuating dynamics simulated by multi-particle collision dynamics

机译:向列液晶中的磁各向异性胶体:多颗粒碰撞动力学模拟的波动动力学

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摘要

Elongated colloids with a permanent magnetic moment and immersed in a nematic liquid crystal are studied numerically using a mesoscopic scheme that supports fluctuations, hydrodynamics, and topological defects. Colloids are accompanied by disclinations curves and subjected to an effective torque caused by the nematic environment and to a magnetic torque due to an external magnetic field. The case is analyzed where these torques compete to bring colloids to two different mutually perpendicular equilibrium states. The fluctuating dynamics of the colloid-defect pair is studied in terms of orientational correlation functions. Analytical expressions for these correlations are derived on the basis of an approximated planar lineal model. A good agreement is found between the numerical and analytical methods when magnetic torques are much larger than nematic torques, while for smaller magnetic torques nonlinear effects are demonstrated to be important. As conclusion, the numerical technique could be considered a reliable approach to the rotational motion of polar nanoparticles in liquid crystals.
机译:利用支持涨落、流体力学和拓扑缺陷的介观方案,数值研究了浸入向列相液晶中的具有永久磁矩的细长胶体。胶体伴随着向错曲线,受到向列相环境产生的有效转矩和外部磁场产生的磁转矩的影响。在这种情况下,分析了这些扭矩的竞争,使胶体两个不同的相互垂直的平衡状态。利用取向相关函数研究了胶体缺陷对的波动动力学。这些相关性的解析表达式是基于近似的平面线性模型推导出来的。当磁转矩比向列相转矩大得多时,数值方法和解析方法之间有很好的一致性,而对于较小的磁转矩,非线性效应被证明是重要的。因此,数值方法可以被认为是研究极性纳米粒子在液晶中旋转运动的可靠方法。

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