首页> 外文期刊>The European physical journal, E. Soft matter >Field-induced realignment of a smectic nanodroplet in an external magnetic field: A numerical investigation
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Field-induced realignment of a smectic nanodroplet in an external magnetic field: A numerical investigation

机译:近场微滴在外部磁场中的场致重排:数值研究

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The field-induced realignment of a smectic-A phase is in principle a complicated process involving the director rotation via the interaction with the field and the layer rotation via the molecular interactions. Time-resolved X-ray scattering experiments have revealed major phenomena concerning the maintenance of the integrity of the smectic-A layer structure during the alignment process. In order to obtain a deeper insight into this process, we have carried out a dissipative particle dynamics study of the realignment kinetics of a nanodroplet of a smectic-A liquid crystal suspended in an isotropic fluid following a switch in the direction of an applied magnetic field. The strength of the mesogen-field interaction is small compared to the inter-molecular interactions. The reaction of the smectic configuration to the field switch was found to depend on the balance between the inter-molecular interactions stabilising the formation of the smectic layering and the interaction of the mesogens with the external field. It is found that the rotational behaviour of the smectic layers under the influence of an external magnetic field arises from a combination of stochastic translational displacements and rotational motions of the centres of mass of the mesogens in the nanodroplets. The simulations indicate that X-ray scattering and NMR experiments monitoring the orientational order are sensitive to different aspects of the realignment process.
机译:场致近晶A相的重新排列原则上是一个复杂的过程,涉及通过与场相互作用的指向矢旋转和通过分子相互作用的层旋转。时间分辨的X射线散射实验揭示了主要的现象,该现象涉及在对准过程中保持近晶A层结构的完整性。为了更深入地了解此过程,我们进行了耗散粒子动力学研究,研究了在施加磁场方向上的转换后,悬浮在各向同性流体中的近晶A液晶的纳米液滴的重新排列动力学。 。相较于分子间相互作用,液晶元-场相互作用的强度较小。发现近晶构型对场开关的反应取决于稳定近晶层的形成的分子间相互作用与液晶元与外场的相互作用之间的平衡。已发现近晶层在外部磁场的影响下的旋转行为是由随机平移位移和纳米液滴中液晶元的质心的旋转运动的组合引起的。仿真表明,监测取向顺序的X射线散射和NMR实验对重新排列过程的不同方面敏感。

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