Abstract. Using boundary-integral projections for time-harmonic electromagnetic (EM) fields, and their numerical implementation, we analyze EM resonance in slabs of two-phase dielectric pho-tonic crystal materials. We characterize resonant frequencies by a complex Floquet–Bloch dispersion relation ω = W (β) defined by the existence of a nontrivial nullspace of a pair of boundary-integral projections parameterized by the wave number β and the time-frequency ω. At resonant frequen-cies, the crystal slab supports a source-free EM field. We link complex resonant frequencies, where the imaginary part is small, to resonant scattering behavior of incident source fields at nearby real frequencies and anomalous transmission of energy through the sla...
Abstract. Using the vector wave multiple-scattering method we show that a sizable photonic band gap ...
We develop a formalism, based on the mode expansion method, to describe the guided resonances and bo...
International audienceFor the scalar wave equation in periodic structures, we establish rigorously t...
Abstract. We compute the transmission of two-dimensional (2D) electromagnetic waves through a square...
International audienceWe simulate the s-polarized electromagnetic field diffracted by a truncated tw...
International audienceWe develop a semianalytical model to describe bound states in the continuum (B...
Light travelling through a slab made of a photonic material is expected to decay exponentially if it...
We present a method to map the absolute electromagnetic field strength inside photonic crystals. We ...
Variational methods are applied to the design of a two-dimensional lossless photonic crystal slab to...
We present a method to map the absolute electromagnetic field strength inside photonic crystals. We ...
We demonstrate and distinguish experimentally the existence of a special type of Fano resonances at ...
We consider the waveguiding by thin patterned slabs embedded in a homogeneous medium. In the longwav...
In this study, the electromagnetic wave propagation behavior of two-dimensional photonic crystal pla...
We examine the effects of absorption losses in photonic crystal structures composed of polar materia...
We show that a slab of a photonic crystal whose thickness is 3.5 mu m can transmit 100% of an incide...
Abstract. Using the vector wave multiple-scattering method we show that a sizable photonic band gap ...
We develop a formalism, based on the mode expansion method, to describe the guided resonances and bo...
International audienceFor the scalar wave equation in periodic structures, we establish rigorously t...
Abstract. We compute the transmission of two-dimensional (2D) electromagnetic waves through a square...
International audienceWe simulate the s-polarized electromagnetic field diffracted by a truncated tw...
International audienceWe develop a semianalytical model to describe bound states in the continuum (B...
Light travelling through a slab made of a photonic material is expected to decay exponentially if it...
We present a method to map the absolute electromagnetic field strength inside photonic crystals. We ...
Variational methods are applied to the design of a two-dimensional lossless photonic crystal slab to...
We present a method to map the absolute electromagnetic field strength inside photonic crystals. We ...
We demonstrate and distinguish experimentally the existence of a special type of Fano resonances at ...
We consider the waveguiding by thin patterned slabs embedded in a homogeneous medium. In the longwav...
In this study, the electromagnetic wave propagation behavior of two-dimensional photonic crystal pla...
We examine the effects of absorption losses in photonic crystal structures composed of polar materia...
We show that a slab of a photonic crystal whose thickness is 3.5 mu m can transmit 100% of an incide...
Abstract. Using the vector wave multiple-scattering method we show that a sizable photonic band gap ...
We develop a formalism, based on the mode expansion method, to describe the guided resonances and bo...
International audienceFor the scalar wave equation in periodic structures, we establish rigorously t...