Patterson M, Hughes S, Combrié S, Tran N-V-Quynh, De Rossi A, Gabet R, Jaouën Y
Department of Physics, Queen's University, Kingston, ON K7L 3N6, Canada.
Phys Rev Lett. 2009 Jun 26;102(25):253903. doi: 10.1103/PhysRevLett.102.253903. Epub 2009 Jun 25.
Light transmission measurements and frequency-delay reflectometry maps for GaAs photonic crystal membranes are presented and analyzed, showing the transition from propagation with a well-defined group velocity to a regime completely dominated by disorder-induced coherent scattering. Employing a self-consistent optical scattering theory, with only statistical functions to describe the structural disorder, we obtain excellent agreement with the experiments using no fitting parameters. Our experiments and theory together provide clear physical insight into naturally occurring light localization and multiple coherent-scattering phenomena in slow-light waveguides.
本文展示并分析了砷化镓光子晶体薄膜的光传输测量结果和频率延迟反射测量图,这些结果表明了从具有明确群速度的传播模式到完全由无序诱导的相干散射主导的模式的转变。通过采用一种自洽的光学散射理论,仅使用统计函数来描述结构无序,我们在不使用拟合参数的情况下与实验结果取得了极佳的吻合。我们的实验和理论共同为慢光波导中自然发生的光局域化和多重相干散射现象提供了清晰的物理见解。