He Jinlong, Jin Yi, Hong Zhi, He Sailing
Centre for THz Research, College of Mechanical and Electrical Engineering, China Jiliang University, Hangzhou, China.
Opt Express. 2008 Jul 21;16(15):11077-82. doi: 10.1364/oe.16.011077.
A slow light waveguide made of a dielectric slab inserted in a two-dimensional photonic crystal with a negative effective refractive index is proposed and numerically studied. The waveguide may possess modes with zero group velocity, and its frequency varies with the thickness of the waveguide. A linearly tapered left-handed photonic crystal waveguide is also proposed and studied. It is shown that the so-called 'trapped rainbow' proposed by Tsakmakidis, Boardman, and Hess [1] is difficult to realize due to a coupling of forward- and backward-propagating modes near zero group velocity. However, different frequency components of a broadband excitation can still be separated through partial accumulation at waveguide sections of different thicknesses.
提出并数值研究了一种由插入具有负有效折射率的二维光子晶体中的电介质平板制成的慢光波导。该波导可能拥有群速度为零的模式,并且其频率随波导厚度而变化。还提出并研究了一种线性渐变的左手光子晶体波导。结果表明,由于在零群速度附近正向和反向传播模式的耦合,Tsakmakidis、Boardman和Hess [1]提出的所谓“捕获彩虹”难以实现。然而,宽带激励的不同频率成分仍可通过在不同厚度的波导段进行部分积累来分离。