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Field-controlled structures in ferromagnetic cholesteric liquid crystals

机译:铁磁胆甾型液晶的场控结构

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摘要

One of the advantages of anisotropic soft materials is that their structures and, consequently, their properties can be controlled by moderate external fields. Whereas the control of materials with uniform orientational order is straightforward, manipulation of systems with complex orientational order is challenging. We show that a variety of structures of an interesting liquid material, which combine chiral orientational order with ferromagnetic one, can be controlled by a combination of small magnetic and electric fields. In the suspensions of magnetic nanoplatelets in chiral nematic liquid crystals, the platelet’s magnetic moments orient along the orientation of the liquid crystal and, consequently, the material exhibits linear response to small magnetic fields. In the absence of external fields, orientations of the liquid crystal and magnetization have wound structure, which can be either homogeneously helical, disordered, or ordered in complex patterns, depending on the boundary condition at the surfaces and the history of the sample. We demonstrate that by using different combinations of small magnetic and electric fields, it is possible to control reversibly the formation of the structures in a layer of the material. In such a way, different periodic structures can be explored and some of them may be suitable for photonic applications. The material is also a convenient model system to study chiral magnetic structures, because it is a unique liquid analog of a solid helimagnet.
机译:各向异性软材料的优点之一是可以通过适度的外场控制其结构,进而控制其性能。尽管具有一致的取向次序的材料的控制是简单的,但是具有复杂的取向次序的系统的操纵却具有挑战性。我们表明,可以通过小磁场和电场的结合来控制手性取向顺序与铁磁相结合的有趣液体材料的多种结构。在手性向列型液晶中的磁性纳米片的悬浮液中,血小板的磁矩沿液晶的方向取向,因此,该材料对小磁场表现出线性响应。在没有外部场的情况下,液晶和磁化的方向具有缠绕结构,根据结构的边界条件和样品的历史,缠绕结构可以均匀地呈螺旋状,无序或以复杂的模式排列。我们证明,通过使用小磁场和电场的不同组合,可以可逆地控制材料层中结构的形成。以这种方式,可以探索不同的周期性结构,并且其中一些可能适合光子应用。该材料还是研究手性磁性结构的便捷模型系统,因为它是固态螺旋磁铁的独特液体类似物。

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