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Finite-Difference Time-Domain Analysis of Twist-Defect-Mode Lasing Dynamics in Cholesteric Photonic Liquid Crystal

机译:胆甾型光子液晶中扭曲缺陷模式激光动力学的时域有限差分分析

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摘要

We have numerically investigated lasing dynamics from a twist defect in a cholesteric liquid crystal (CLC) by an auxiliary differential equation finite-difference time-domain (ADE-FDTD) method. As ADEs, the equation of motion of polarization described on the basis of the classical electron oscillator (Lorenz) model and the rate equation in a four-level energy structure are incorporated. A lower lasing threshold has been obtained from the twist-defect mode (TDM) than from band-edge lasing. Standing-wave-like electric fields are strongly localized only in the vicinity where a twist defect is introduced into a CLC, which works as a distributed feedback TDM laser source. The oscillation direction of a standing-wave electric field is not parallel or perpendicular to LC molecules, which is quite different from the bulk CLC case. Our results may be useful for creating more efficient TDM-based CLC lasers.
机译:我们已经通过辅助微分方程有限差分时域(ADE-FDTD)方法对胆甾型液晶(CLC)中扭曲缺陷产生的激光动力学进行了数值研究。作为ADE,结合了基于经典电子振荡器(Lorenz)模型描述的极化运动方程和四能级能量结构中的速率方程。从扭曲缺陷模式(TDM)获得的激光阈值比从带边缘激光获得的激光阈值低。驻波状电场仅在将扭曲缺陷引入CLC的附近强烈定位,CLC用作分布式反馈TDM激光源。驻波电场的振荡方向不平行或不垂直于LC分子,这与本体CLC情况大不相同。我们的结果对于创建更高效​​的基于TDM的CLC激光器可能有用。

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  • 来源
    《Japanese journal of applied physics》 |2012年第4issue2期|p.04DK02.1-04DK02.6|共6页
  • 作者单位

    Department of Electrical and Electronic Engineering, Graduate School of Engineering, Mie University, Tsu 514-8507, Japan,The Center of Ultimate Technology on Nano-Electronics, Mie University, Tsu 514-8507, Japan;

    Department of Electrical and Electronic Engineering, Graduate School of Engineering, Mie University, Tsu 514-8507, Japan;

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