论文标题

孤子壁是由极性表面相互作用在铁电列液晶体中配对的

Soliton walls paired by polar surface interactions in a ferroelectric nematic liquid crystal

论文作者

Basnet, Bijaya, Rajabi, Mojtaba, Wang, Hao, Kumari, Priyanka, Thapa, Kamal, Paul, Sanjoy, Lavrentovich, Maxim O., Lavrentovich, Oleg D.

论文摘要

表面相互作用负责凝结物质的许多特性,范围从晶体面到相变的动力学。通常,这些相互作用沿正常到界面和界面内的极性是极性。在这里,我们证明了铁电列NF的极地内表面相互作用在微薄的平面细胞中产生极性单域和交流电极化的条纹,在较厚的平板中被180度域壁隔开。表面极性结合了这些壁对,产生总偏振旋转360度。对总表面锚固强度的极性贡献为10%。域壁涉及极化的张开,弯曲和扭曲。该结构表明,弹性弹性常数大于弯曲模量。 360度对类似于宇宙学模型中的结构壁,并在外部磁场中具有偏见的真空和铁磁体。

Surface interactions are responsible for many properties of condensed matter, ranging from crystal faceting to the kinetics of phase transitions. Usually, these interactions are polar along the normal to the interface and apolar within the interface. Here, we demonstrate that polar in-plane surface interactions of a ferroelectric nematic NF produce polar monodomains in micron-thin planar cells and stripes of an alternating electric polarization, separated by 180 degree domain walls, in thicker slabs. The surface polarity binds together pairs of these walls, yielding a total polarization rotation by 360 degrees. The polar contribution to the total surface anchoring strength is on the order of 10%. The domain walls involve splay, bend, and twist of the polarization. The structure suggests that the splay elastic constant is larger than the bend modulus. The 360 degree pairs resemble domain walls in cosmology models with biased vacuums and ferromagnets in an external magnetic field.

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