Vol. 42, Issue 1, pp. 23-29

Vol. 42 Issue 1 pp. 23-29

Interference effect in a dual microresonator-coupled Mach–Zehnder interferometer

Ying Lu, Xiaohui Huang, Xiangyong Fu, Wuqi Wen, Jianquan Yao

Keywords

microresonator, Mach–Zehnder interferometer, Fano resonance, coupled resonator induced transparency and absorption

Abstract

We present a theoretical study of interference effect in a Mach–Zehnder interferometer in which two microresonators are side coupled to both arms of the interferometer. The results show that sharp asymmetric Fano resonance, coupled resonator induced transparency and absorption effects can be created in such a structure. We demonstrate that these effects arise from interference between a resonance mode and a continuing propagating mode with asymmetric phase difference, destructive interference between two overcoupled resonance modes, and constructive interference between an overcoupled resonance mode and an undercoupled mode or a continuing propagating mode with symmetric phase differences, respectively. These effects may offer a better understanding of the analogous effects in atomic medium and also make optical resonators a potential device to utilize these effects.

Vol. 42
Issue 1
pp. 23-29

0.19 MB
OPTICA APPLICATA - a quarterly of the Wrocław University of Science and Technology, Faculty of Fundamental Problems of Technology