Bloch surface waves (BSWs) are recently developing alternative to surface plasmon polaritons (SPPs). Due to dramatically enhanced propagation distance and strong field confinement these surface states can be successfully used in on-chip all-optical integrated devices of increased complexity. In this work we propose a highly miniaturized grating based BSW coupler which is gathering launching and directional switching functionalities in a single element. This device allows to control with polarization the propagation direction of Bloch surface waves at subwavelength scale, thus impacting a large panel of domains such as optical circuitry, function design, quantum optics, etc
We theoretically study light propagation in guided Bloch surface waves (BSWs) supported by photonic ...
In this work, we make a step forward in the manipulation of light on the surface of one-dimensional ...
Surface plasmon polaritons (SPPs) have been thoroughly studied in the past decades for not only sens...
International audienceBloch surface waves (BSWs) are recently developing alternative to surface plas...
Bloch surface waves (BSWs) are electromagnetic surface waves which can be excited at the interface b...
International audienceWe introduce a novel implementation of aminiaturized photonic platform on a mu...
Due to their extraordinary quality factor and extreme sensitivity to surface perturbations, Bloch su...
International audienceWe study the magnetic spin-locking of optical surface waves. Through an angula...
International audienceWe propose a novel implementation of a miniaturized photonic platform fabricat...
We have reported on a theoretical investigation of guided polariton states arising from the strong c...
We present a hybrid surface wave device, which combines Bloch surface wave (BSW) and plasmonic nanoa...
This thesis is devoted to develop tunable devices on the base of one-dimensional photonic crystals (...
We present a direct evidence of Bloch surface waves (BSWs) waveguiding on ultrathin polymeric ridges...
Resonant propagating waves created on the surface of a dielectric multilayer stack, called Bloch sur...
Photonic crystal ridge waveguides supporting guided Bloch surface waves (GBSWs) are a valuable and f...
We theoretically study light propagation in guided Bloch surface waves (BSWs) supported by photonic ...
In this work, we make a step forward in the manipulation of light on the surface of one-dimensional ...
Surface plasmon polaritons (SPPs) have been thoroughly studied in the past decades for not only sens...
International audienceBloch surface waves (BSWs) are recently developing alternative to surface plas...
Bloch surface waves (BSWs) are electromagnetic surface waves which can be excited at the interface b...
International audienceWe introduce a novel implementation of aminiaturized photonic platform on a mu...
Due to their extraordinary quality factor and extreme sensitivity to surface perturbations, Bloch su...
International audienceWe study the magnetic spin-locking of optical surface waves. Through an angula...
International audienceWe propose a novel implementation of a miniaturized photonic platform fabricat...
We have reported on a theoretical investigation of guided polariton states arising from the strong c...
We present a hybrid surface wave device, which combines Bloch surface wave (BSW) and plasmonic nanoa...
This thesis is devoted to develop tunable devices on the base of one-dimensional photonic crystals (...
We present a direct evidence of Bloch surface waves (BSWs) waveguiding on ultrathin polymeric ridges...
Resonant propagating waves created on the surface of a dielectric multilayer stack, called Bloch sur...
Photonic crystal ridge waveguides supporting guided Bloch surface waves (GBSWs) are a valuable and f...
We theoretically study light propagation in guided Bloch surface waves (BSWs) supported by photonic ...
In this work, we make a step forward in the manipulation of light on the surface of one-dimensional ...
Surface plasmon polaritons (SPPs) have been thoroughly studied in the past decades for not only sens...