International audienceThe authors numerically analyse the performance of a mesoscopic photonic crystal (MPhC) waveguide that could be exploited to develop a new class of routing elements and a cascadable circuitry taking advantage of the spatial and spectral reconfigurability that this structure offers. The design of the MPhC was performed by means of the 3D plane wave expansion method (3D-MPB code), while the MPhC waveguide has been analysed by a 3D-FDTD code. The numerical results show that the MPhC waveguide exhibits minimal reflections at PhC input interfaces without either affecting the feasibility or the complexity of the structure, high transmission, strong mesoscopic self-collimation and discrete translational invariance. Moreover, ...
Abstract. The subject of this PhD thesis is the study of photonic crystal waveguides that incorporat...
Using 2 different numerical methods (FDTD and a novel pandirectional planar Helmholtz solver), we an...
The optimization of PhC waveguides is a key issue for successfully designing PhC devices. Since this...
International audienceThe authors numerically analyse the performance of a mesoscopic photonic cryst...
International audienceMesoscopic Photonic Crystals (MPhCs) are composed of alternating natural or ar...
International audienceMesoscopic photonic crystals (MPhC) are composed of alternating photonic cryst...
Photonic crystals are artificial dielectric lattice structures which may be periodic in up to three ...
Abstract We present new designs of waveguide components in photonic crystal structures exhibiting hi...
Photonic devices that exploit photonic crystal (PhC) principles in a planar environment continue to ...
We present a numerical analysis of the performance of three-dimensional (3D) perfectly matched layer...
In the last few years research has identified Photonic Crystals (PhCs) as promising material that ex...
We investigate the different performances of a 2D and a 3D numerical approach in investigating photo...
International audienceWe propose a simple, fast, and accurate method to design complex layered photo...
We present a new technique for the computation of transmission and reflection coefficients of wavegu...
Abstract:- In this study, the multimode interference (MMI) phenomenon and the self-imaging principle...
Abstract. The subject of this PhD thesis is the study of photonic crystal waveguides that incorporat...
Using 2 different numerical methods (FDTD and a novel pandirectional planar Helmholtz solver), we an...
The optimization of PhC waveguides is a key issue for successfully designing PhC devices. Since this...
International audienceThe authors numerically analyse the performance of a mesoscopic photonic cryst...
International audienceMesoscopic Photonic Crystals (MPhCs) are composed of alternating natural or ar...
International audienceMesoscopic photonic crystals (MPhC) are composed of alternating photonic cryst...
Photonic crystals are artificial dielectric lattice structures which may be periodic in up to three ...
Abstract We present new designs of waveguide components in photonic crystal structures exhibiting hi...
Photonic devices that exploit photonic crystal (PhC) principles in a planar environment continue to ...
We present a numerical analysis of the performance of three-dimensional (3D) perfectly matched layer...
In the last few years research has identified Photonic Crystals (PhCs) as promising material that ex...
We investigate the different performances of a 2D and a 3D numerical approach in investigating photo...
International audienceWe propose a simple, fast, and accurate method to design complex layered photo...
We present a new technique for the computation of transmission and reflection coefficients of wavegu...
Abstract:- In this study, the multimode interference (MMI) phenomenon and the self-imaging principle...
Abstract. The subject of this PhD thesis is the study of photonic crystal waveguides that incorporat...
Using 2 different numerical methods (FDTD and a novel pandirectional planar Helmholtz solver), we an...
The optimization of PhC waveguides is a key issue for successfully designing PhC devices. Since this...