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首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Laser emission at the second-order photonic band gap in an electric-field-distorted cholesteric liquid crystal
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Laser emission at the second-order photonic band gap in an electric-field-distorted cholesteric liquid crystal

机译:电场扭曲的胆甾型液晶二阶光子带隙的激光发射

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摘要

We study the optical properties of a cholesteric liquid crystal doped with a fluorescent dye in the regime of highly distorted helix without full helix unwinding. The distortion was achieved by applying a pulsed AC electric field, perpendicular to the helix axis. If the pulse is in the millisecond range, the helix is deformed but keeps its original pitch even for electric fields higher than the theoretical critical field for helix unwinding. In this field regime, very pronounced high-order photonic band gaps are observed, in agreement with our calculations. We theoretically explore the possibility of obtaining viable laser emission at the second-order photonic band gap, and experimentally find that lasing is not only possible but has a figure of merit similar to that of the usual laser at the main-gap region. Therefore, electric-field-induced high-order photonic band gaps are potentially useful for multiline laser applications.
机译:我们研究掺杂有荧光染料的胆甾型液晶的光学性质,在高度扭曲的螺旋的状态下,没有完整的螺旋展开。 通过施加垂直于螺旋轴的脉冲交流电场来实现变形。 如果脉冲处于毫秒范围内,则螺旋变形,即使对于高于Helix展开的理论关键字段,即使对于高于理论关键领域,也可以保持其原始间距。 在该场制度中,与我们的计算一致地观察到非常明显的高阶光子频带隙。 理论上我们探讨了在二阶光子带隙处获得可行激光发射的可能性,并且实验地发现激光不仅可能而且具有与主间隙区域的通常激光器类似的优点。 因此,电场诱导的高阶光子带间隙对于多线激光应用可能是有用的。

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