A 1D photonic crystal structure sustaining optical surface waves is investigated. The propagation length of the surface mode is studied both using an eigenmode model and a rigorous time domain solver. The two models show good convergence. Our results demonstrate that by a carefully designed 1D photonic crystal, dielectric surface waves may propagate over several millimeters, even if a Kretschmann-type coupling configuration is used
Background: The periodic dielectric multilayers sustaining Bloch surface waves have been proposed as...
Bloch Surface Waves (BSWs) are propagation modes that exist at the interface between a homogeneous m...
We report on the investigation on the resolution of optical sensors exploiting Bloch surface waves s...
Guiding and confining light at interfaces is crucial for applications involving light-matter interac...
We study surface states of 1D photonic crystals using a semiclassical coupled wave theory. Both TE a...
We theoretically study light propagation in guided Bloch surface waves (BSWs) supported by photonic ...
An analytical direct matching procedure within the Kronig-Penney model was applied to analyze the di...
Accurate analytic approximations are developed for the band gap boundaries and surface waves of a 1D...
We report on the experimental characterization of the peculiar properties of surface electromagnetic...
In this work, we make a step forward in the manipulation of light on the surface of one-dimensional ...
We investigated experimentally and numerically the robustness of optical sensors based on Bloch wave...
The finite-difference time-domain method is employed for the analysis of coupling of the surface mod...
Bloch surface waves sustained by truncated 1D photonic crystals (1DPCs) are well known tools for sur...
We report numerical simulations of surface modes in two-dimensional high-index-contrast photonic cry...
Abstract. Photonic crystal structure supporting the surface wave is considered. It is shown both the...
Background: The periodic dielectric multilayers sustaining Bloch surface waves have been proposed as...
Bloch Surface Waves (BSWs) are propagation modes that exist at the interface between a homogeneous m...
We report on the investigation on the resolution of optical sensors exploiting Bloch surface waves s...
Guiding and confining light at interfaces is crucial for applications involving light-matter interac...
We study surface states of 1D photonic crystals using a semiclassical coupled wave theory. Both TE a...
We theoretically study light propagation in guided Bloch surface waves (BSWs) supported by photonic ...
An analytical direct matching procedure within the Kronig-Penney model was applied to analyze the di...
Accurate analytic approximations are developed for the band gap boundaries and surface waves of a 1D...
We report on the experimental characterization of the peculiar properties of surface electromagnetic...
In this work, we make a step forward in the manipulation of light on the surface of one-dimensional ...
We investigated experimentally and numerically the robustness of optical sensors based on Bloch wave...
The finite-difference time-domain method is employed for the analysis of coupling of the surface mod...
Bloch surface waves sustained by truncated 1D photonic crystals (1DPCs) are well known tools for sur...
We report numerical simulations of surface modes in two-dimensional high-index-contrast photonic cry...
Abstract. Photonic crystal structure supporting the surface wave is considered. It is shown both the...
Background: The periodic dielectric multilayers sustaining Bloch surface waves have been proposed as...
Bloch Surface Waves (BSWs) are propagation modes that exist at the interface between a homogeneous m...
We report on the investigation on the resolution of optical sensors exploiting Bloch surface waves s...