Mookherjea Shayan
Department of Electrical and Computer Engineering M/C 0407, University of California, San Diego, La Jolla, California 92093, USA.
Opt Lett. 2005 Sep 15;30(18):2406-8. doi: 10.1364/ol.30.002406.
A tight-binding optical waveguide formed by proximity coupling of nearest-neighbor resonators, e.g., a coupled-resonator optical waveguide (CROW), has distinct wave and pulse propagation characteristics compared with a conventional waveguide, and several applications in photonic devices have been proposed recently. But analysis of the dispersion, and in particular the group-velocity dispersion, in such a waveguide requires particular attention: the waveguide displays two distinct regimes of operation, depending on the position of the wave packet in the dispersion relationship.
由最近邻谐振器的近场耦合形成的紧密束缚光波导,例如耦合谐振器光波导(CROW),与传统光波导相比具有独特的波和脉冲传播特性,并且最近已经提出了在光子器件中的几种应用。但是,分析这种光波导中的色散,特别是群速度色散,需要特别注意:根据波包在色散关系中的位置,该光波导表现出两种不同的工作模式。