论文标题

拓扑液晶上层建筑作为结构的轻激光器

Topological liquid crystal superstructures as structured light lasers

论文作者

Papič, Miha, Mur, Urban, Ravnik, Miha, Muševič, Igor, Humar, Matjaž

论文摘要

液晶(LCS)形成了具有人为或自然产生的拓扑缺陷的极丰富的自组装拓扑结构。 LCS的一些主要应用是各种光学和光子设备,与固态相比,软光子系统在独特的特性(例如自组装,自我修复,大可调性,对外部刺激和生物相容性的敏感性)方面从根本上有所不同。在这里,我们表明,可以通过插入薄薄的Fabry-Pérot微腔中的拓扑缺陷的自组装拓扑LC超结构来产生复杂的可调微型塑料。 LC上部结构的拓扑和几何形状通过提供复杂的三维变化的光轴和顺序参数奇点来确定发射光的结构,这也影响了光极化的拓扑。可以通过电场在模式之间切换微叠剂,并且其波长可以用温度调节。拟议的软物质微型层次方法在软物质光子学研究中打开了新的方向,可以设计和实施具有特殊量身定制强度和极化场的结构化光。

Liquid crystals (LCs) form an extremely rich range of self-assembled topological structures with artificially or naturally created topological defects. Some of the main applications of LCs are various optical and photonic devices, where compared to their solid state counterparts soft photonic systems are fundamentally different in terms of unique properties such as self-assembly, self-healing, large tunability, sensitivity to external stimuli and biocompatibility. Here we show that complex tunable microlasers emitting structured light can be generated from self-assembled topological LC superstructures containing topological defects inserted into a thin Fabry-Pérot microcavity. The topology and geometry of the LC superstructure determine the structuring of the emitted light by providing complex three dimensionally varying optical axis and order parameter singularities, also affecting the topology of the light polarization. The microlaser can be switched between modes by an electric field and its wavelength can be tuned with temperature. The proposed soft matter microlaser approach opens new direction in soft matter photonics research, where structured light with specifically tailored intensity and polarization fields could be designed and implemented.

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