Khorshidahmad Amin, Kirk Andrew G
Photonic Systems Group, Department of Electrical and Computer Engineering, McGill University, 3480 University, Montreal, Quebec H3A 2A7, Canada.
Opt Express. 2010 Apr 12;18(8):7732-42. doi: 10.1364/OE.18.007732.
A dynamically reconfigurable nested photonic crystal cavity suitable for frequency conversion applications is proposed. Dynamic switching between two distinct cavities allows intermodal transition via spatially-uniform tuning of the refractive index. Exclusion of the initial resonant mode from the Eigen modes of the tuned cavity precludes the adiabatic wavelength conversion process. Multiple intermodal transitions are suppressed by the symmetry of the mode profiles of the two cavities. Over 90nm wavelength shift (from L-band to the S-band) is shown numerically.
提出了一种适用于频率转换应用的动态可重构嵌套光子晶体腔。两个不同腔之间的动态切换允许通过折射率的空间均匀调谐实现模式间转换。调谐腔的本征模式中排除初始共振模式可防止绝热波长转换过程。两个腔的模式轮廓对称性抑制了多个模式间转换。数值结果表明波长偏移超过90nm(从L波段到S波段)。