Fan Shanhui, Suh Wonjoo, Joannopoulos J D
Department of Electrical Engineering, Stanford University, Stanford, California 94305, USA.
J Opt Soc Am A Opt Image Sci Vis. 2003 Mar;20(3):569-72. doi: 10.1364/josaa.20.000569.
We present a theory of the Fano resonance for optical resonators, based on a temporal coupled-mode formalism. This theory is applicable to the general scheme of a single optical resonance coupled with multiple input and output ports. We show that the coupling constants in such a theory are strongly constrained by energy-conservation and time-reversal symmetry considerations. In particular, for a two-port symmetric structure, Fano-resonant line shape can be derived by using only these symmetry considerations. We validate the analysis by comparing the theoretical predictions with three-dimensional finite-difference time-domain simulations of guided resonance in photonic crystal slabs. Such a theory may prove to be useful for response-function synthesis in filter and sensor applications.
我们基于时间耦合模形式理论,提出了一种光学谐振器的Fano共振理论。该理论适用于单个光学共振与多个输入和输出端口耦合的一般方案。我们表明,在这样的理论中,耦合常数受到能量守恒和时间反演对称性考虑的强烈约束。特别是对于两端口对称结构,仅通过这些对称性考虑就可以推导出Fano共振线形。我们通过将理论预测与光子晶体平板中导模共振的三维时域有限差分模拟进行比较,验证了该分析。这样的理论可能被证明在滤波器和传感器应用中的响应函数合成方面是有用的。