Smalyukh Ivan I, Kaputa Daniel, Kachynski Aliaksandr V, Kuzmin Andrey N, Ackerman Paul J, Twombly Christopher W, Lee Taewoo, Trivedi Rahul P, Prasad Paras N
Department of Physics and Liquid Crystal Materials Research Center, University of Colorado, Boulder, Colorado 80309, USA.
Opt Express. 2012 Mar 26;20(7):6870-80. doi: 10.1364/OE.20.006870.
We describe laser-induced two-dimensional periodic photonic structures formed by localized particle-like excitations in an untwisted confined cholesteric liquid crystal. The individual particle-like excitations (dubbed "Torons") contain three-dimensional twist of the liquid crystal director matched to the uniform background director field by topological point defects. Using both single-beam-steering and holographic pattern generation approaches, the periodic crystal lattices are tailored by tuning their periodicity, reorienting their crystallographic axes, and introducing defects. Moreover, these lattices can be dynamically reconfigurable: generated, modified, erased and then recreated, depending on the needs of a particular photonic application. This robust control is performed by tightly focused laser beams of power 10-100 mW and by low-frequency electric fields at voltages ~10 V applied to the transparent electrodes.
我们描述了在未扭曲的受限胆甾相液晶中由局域类粒子激发形成的激光诱导二维周期性光子结构。单个类粒子激发(称为“托伦”)包含液晶指向矢的三维扭曲,通过拓扑点缺陷与均匀背景指向矢场相匹配。利用单光束转向和全息图案生成方法,通过调整周期性、重新定向晶格轴以及引入缺陷来定制周期性晶格。此外,这些晶格可以动态重新配置:根据特定光子应用的需求进行生成、修改、擦除然后重新创建。这种稳健的控制是通过功率为10 - 100 mW的紧聚焦激光束以及施加在透明电极上的约10 V电压的低频电场来实现的。