The formation of tunable bound states in the continuum (BICs) within photonic crystal (PC) slabs has been investigated by using a semianalytical coupled-wave theory framework. An analytic expression of the radiative wave has been derived in order to depict the condition of BICs. As a result, in addition to well-known symmetry-protected BICs, a novel type of vertical-cancellation BIC can be realized through continuously varying a given parameter to eliminate radiative waves at the boundaries. We investigated one-dimensional and two-dimensional (2D) periodic structures, and found that such tunable BICs can occur for a wide range of wave vectors by the selection of appropriate slab thicknesses. For a 2D PC slab, a ring of high-Q modes is predi...
Bound states in the continuum provide a remarkable example of how a simple problem solved about a ce...
We report theoretical and experimental observation of radiationless bound states in the continuum (...
Creating nonradiating dark modes is key to achieving high-Q resonance in dielectric open cavities. T...
We investigate the formation of photonic bound states in the continuum (BICs) in photonic crystal sl...
International audienceWe develop a semianalytical model to describe bound states in the continuum (B...
Abstract We investigate the bound states in the continuum (BICs) in photonic crystal slabs composed ...
Bound states in the continuum (BICs) in photonic crystal slabs represent the resonances with an infi...
We develop a formalism, based on the mode expansion method, to describe the guided resonances and bo...
The bound states in the continuum (BICs) in photonic crystal (PhC) slabs presume infinite periodicit...
We apply the resonant-state expansion (RSE), a novel rigorous theoretical method in electrodynamics,...
The resonant-state expansion (RSE) provides a precise and computationally cheap tool to find resonan...
Bound states in the continuum (BICs) are radiationless localized states embedded in the part of the ...
Localized wave confinement in electromagnetic devices is crucial in science and technology. Waves ca...
Bound state in the continuum (BIC) is a mathematical concept with an infinite radiative quality fact...
Photonic bound states in the continuum (BICs) are special localized and non-decaying states of a pho...
Bound states in the continuum provide a remarkable example of how a simple problem solved about a ce...
We report theoretical and experimental observation of radiationless bound states in the continuum (...
Creating nonradiating dark modes is key to achieving high-Q resonance in dielectric open cavities. T...
We investigate the formation of photonic bound states in the continuum (BICs) in photonic crystal sl...
International audienceWe develop a semianalytical model to describe bound states in the continuum (B...
Abstract We investigate the bound states in the continuum (BICs) in photonic crystal slabs composed ...
Bound states in the continuum (BICs) in photonic crystal slabs represent the resonances with an infi...
We develop a formalism, based on the mode expansion method, to describe the guided resonances and bo...
The bound states in the continuum (BICs) in photonic crystal (PhC) slabs presume infinite periodicit...
We apply the resonant-state expansion (RSE), a novel rigorous theoretical method in electrodynamics,...
The resonant-state expansion (RSE) provides a precise and computationally cheap tool to find resonan...
Bound states in the continuum (BICs) are radiationless localized states embedded in the part of the ...
Localized wave confinement in electromagnetic devices is crucial in science and technology. Waves ca...
Bound state in the continuum (BIC) is a mathematical concept with an infinite radiative quality fact...
Photonic bound states in the continuum (BICs) are special localized and non-decaying states of a pho...
Bound states in the continuum provide a remarkable example of how a simple problem solved about a ce...
We report theoretical and experimental observation of radiationless bound states in the continuum (...
Creating nonradiating dark modes is key to achieving high-Q resonance in dielectric open cavities. T...