We reveal that there exists an indirect interaction between two single-mode microcavities which have no direct coupling. This indirect interaction is mediated by coupling the two microcavities to a common waveguide, and it plays a key role in obtaining the asymmetric Fano line shape of the transport spectrum of the coupled cavity system. Finally, we show that this sharp Fano line shape can contribute to highly sensitive sensing, which is immune to most environmental variations.OpticsPhysics, Atomic, Molecular & ChemicalSCI(E)EI16ARTICLE6null8
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
A route toward line-shape engineering of Fano resonances in photonic structures is theoretically pro...
We observe Fano resonance in a single microresonator, in which two modes are excited simultaneously ...
We experimentally studied the transmission spectrum of a coupled resonator structure in which a low-...
Two Fano resonances are theoretically predicted in a single defect nanocavity, consisting of a recta...
We measure and analyze reflection spectra of directly coupled systems of waveguides and cavities. Th...
We propose a coupled optical microresonator system that can be used as a new and flexible platform t...
We measure and analyze reflection spectra of directly coupled systems of waveguides and cavities. Th...
We theoretically investigate the phenomena of optically induced transparency for a weak probe field ...
Fano resonances, sometimes behaving like electromagnetic induced transparency (EIT)-like resonances ...
We measured and analyzed reflection spectra of directly coupled systems of waveguides and cavities. ...
We measured and analyzed reflection spectra of directly coupled systems of waveguides and cavities. ...
We measured and analyzed reflection spectra of directly coupled systems of waveguides and cavities. ...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
A route toward line-shape engineering of Fano resonances in photonic structures is theoretically pro...
We observe Fano resonance in a single microresonator, in which two modes are excited simultaneously ...
We experimentally studied the transmission spectrum of a coupled resonator structure in which a low-...
Two Fano resonances are theoretically predicted in a single defect nanocavity, consisting of a recta...
We measure and analyze reflection spectra of directly coupled systems of waveguides and cavities. Th...
We propose a coupled optical microresonator system that can be used as a new and flexible platform t...
We measure and analyze reflection spectra of directly coupled systems of waveguides and cavities. Th...
We theoretically investigate the phenomena of optically induced transparency for a weak probe field ...
Fano resonances, sometimes behaving like electromagnetic induced transparency (EIT)-like resonances ...
We measured and analyzed reflection spectra of directly coupled systems of waveguides and cavities. ...
We measured and analyzed reflection spectra of directly coupled systems of waveguides and cavities. ...
We measured and analyzed reflection spectra of directly coupled systems of waveguides and cavities. ...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
A route toward line-shape engineering of Fano resonances in photonic structures is theoretically pro...