8 pages, 4 figuresInternational audiencePhysical mechanisms involved in the light confinement in photonic crystal slab microcavities are investigated. We first present a full three-dimensional numerical study of these microcavities. Then, to gain physical insight into the confinement mechanisms, we develop a Fabry-Perot model. This model provides accurate predictions and sheds new light on the physics of light confinement. We clearly identify two mechanisms to enhance the Q factor of these microcavities. The first one consists in improving the mode-profile matching at the cavity terminations and the second one in using a slow wave in the cavity
We propose two-dimensional photonic-crystal-embedded microcavities. Numerical simulations of wavegui...
This Letter introduces an enhanced cavity-waveguide coupling architecture based upon slow-light engi...
International audienceWe propose to use a localized Γ-point slow Bloch mode in a 2D- Photonic Crysta...
The physical mechanisms that can be used as general recipes for designing high-quality factor (Q) ph...
We study the confinement of low group velocity band-edge modes in a photonic crystal slab. We use a ...
We present a general scheme to trap slow-light in a photonic crystal slab and achieve high Q/V ratio...
International audienceIn the present paper, we propose an approach based on slow Bloch mode microcav...
In this work, we demonstrate that the compound mode properties of coupled photonic-crystal cavities ...
Photonic crystal cavities enable strong light–matter interactions, with numerous applications, such ...
A convenient approach for slowing down light in integrated optical circuits is by utilizing a set of...
In this study, tight-binding formalism is applied to a photonic crystal coupled cavity structure in ...
Abstract—We propose a new single-defect microcavity which supports well-confined whispering gallery ...
We report on the combination of slow light propagation with the resonance properties of a photonic c...
We designed a two-dimensional coupled photonic crystal resonator array with hexagonal lattice. The c...
We have found a blueshift in the cavity modes confined in two-dimensional photonic crystal microcavi...
We propose two-dimensional photonic-crystal-embedded microcavities. Numerical simulations of wavegui...
This Letter introduces an enhanced cavity-waveguide coupling architecture based upon slow-light engi...
International audienceWe propose to use a localized Γ-point slow Bloch mode in a 2D- Photonic Crysta...
The physical mechanisms that can be used as general recipes for designing high-quality factor (Q) ph...
We study the confinement of low group velocity band-edge modes in a photonic crystal slab. We use a ...
We present a general scheme to trap slow-light in a photonic crystal slab and achieve high Q/V ratio...
International audienceIn the present paper, we propose an approach based on slow Bloch mode microcav...
In this work, we demonstrate that the compound mode properties of coupled photonic-crystal cavities ...
Photonic crystal cavities enable strong light–matter interactions, with numerous applications, such ...
A convenient approach for slowing down light in integrated optical circuits is by utilizing a set of...
In this study, tight-binding formalism is applied to a photonic crystal coupled cavity structure in ...
Abstract—We propose a new single-defect microcavity which supports well-confined whispering gallery ...
We report on the combination of slow light propagation with the resonance properties of a photonic c...
We designed a two-dimensional coupled photonic crystal resonator array with hexagonal lattice. The c...
We have found a blueshift in the cavity modes confined in two-dimensional photonic crystal microcavi...
We propose two-dimensional photonic-crystal-embedded microcavities. Numerical simulations of wavegui...
This Letter introduces an enhanced cavity-waveguide coupling architecture based upon slow-light engi...
International audienceWe propose to use a localized Γ-point slow Bloch mode in a 2D- Photonic Crysta...