Nanosystem Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Japan.
Nat Commun. 2011;2:246. doi: 10.1038/ncomms1250.
Skyrmions are particle-like topological entities in a continuous field that have an important role in various condensed matter systems, including two-dimensional electron gases exhibiting the quantum Hall effect, chiral ferromagnets and Bose-Einstein condensates. Here we show theoretically, with the aid of numerical methods, that a highly chiral nematic liquid crystal can accommodate a quasi-two-dimensional Skyrmion lattice as a thermodynamically stable state, when it is confined to a thin film between two parallel surfaces imposing normal alignment. A chiral nematic liquid crystal film can thus serve as a model Skyrmion system, allowing direct investigation of their structural properties by a variety of optical techniques at room temperatures that are less demanding than Skyrmion systems discussed previously.
螺旋是连续场中的粒子状拓扑实体,在各种凝聚态系统中都有重要作用,包括表现出量子霍尔效应的二维电子气体、手性铁磁体和玻色-爱因斯坦凝聚体。在这里,我们通过数值方法从理论上表明,当高度手性向列液晶被限制在两个平行表面之间的薄膜中并施加正常取向时,它可以容纳准二维斯格明子晶格作为热力学稳定状态。因此,手性向列液晶薄膜可以作为斯格明子系统的模型,允许通过各种光学技术在室温下直接研究它们的结构特性,这些技术的要求比以前讨论的斯格明子系统低。