Department of Applied Physics, Stanford University, Stanford, California 94305, USA.
Opt Lett. 2013 Jan 15;38(2):100-2. doi: 10.1364/OL.38.000100.
We derive tight upper and lower bounds of the ratio between decay rates to two ports from a single resonance exhibiting Fano interference, based on a general temporal coupled-mode theory formalism. The photon transport between these two ports involves both direct and resonance-assisted contributions, and the bounds depend only on the direct process. The bounds imply that, in a lossless system, full reflection is always achievable at Fano resonance, even for structures lacking mirror symmetries, while full transmission can only be seen in a symmetric configuration where the two decay rates are equal. The analytic predictions are verified against full-field electromagnetic simulations.
我们基于一般的时域耦合模理论形式,从单个表现出 Fano 干涉的共振中得出了两个端口之间的衰减率比值的紧上限和下限。这两个端口之间的光子输运既涉及直接过程,也涉及共振辅助过程,而且这些界限仅取决于直接过程。这些界限意味着,在无损耗系统中,即使对于没有镜像对称性的结构,在 Fano 共振处总是可以实现完全反射,而完全透射只能在两个衰减率相等的对称配置中看到。我们通过全电磁场模拟验证了分析预测。