Efficient on-chip manipulation of photon spin is of crucial importance in developing future integrated nanophotonics as is electron spin in spintronics. The unidirectionality induced by the interaction between spin and orbital angular momenta suffers low efficiency in classical macroscopic optics, while it can be highly enhanced on subwavelength scales with proper architectures. Here we propose and demonstrate a spin-sorting achiral split-ring coupler to unidirectionally excite dielectricloaded plasmonic modes in two independent waveguides. We found experimentally that the impinging light with different spin can be selectively directed into one of two branching plasmonic waveguides with a directionality contrast up to 15.1 dB. A circular-he...
This thesis focuses on the manipulation of the angular momentum of light at the nanoscale.The total ...
We report strongly non-reciprocal behaviour for quantum dot exciton spins coupled to nano-photonic w...
International audience<span id="top">We study the magnetic spin-locking of opticalsurface waves. T...
Efficient on-chip manipulation of photon spin is of crucial importance in developing future integrat...
Spin-dependent, directional light-matter interactions form the basis of chiral quantum networks. In ...
International audienceAs any physical particle or object, light undergoing a circular trajectory fea...
International audienceSubwavelength plasmonic waveguides show the unique ability of strongly localiz...
Spin-dependent, directional light–matter interactions form the basis of chiral quantum networks. In ...
An ultra-compact and ultra-broadband polarization-selective bidirectional vertical coupler is propos...
As any physical particle or object, light undergoing a circular trajectory features a constant extri...
The authors acknowledge the support of the Canada Excellence Research Chairs Program.Light beams wit...
Directional coupling of light in nanophotonic circuits has recently attracted increasing interest, w...
The investigations on optical angular momenta and their interactions have broadened our knowledge of...
Metasurfaces, as a two-dimensional (2D) version of metamaterials, have drawn considerable attention ...
In this project, two contributions are reported. Firstly, the directional and singular generation of...
This thesis focuses on the manipulation of the angular momentum of light at the nanoscale.The total ...
We report strongly non-reciprocal behaviour for quantum dot exciton spins coupled to nano-photonic w...
International audience<span id="top">We study the magnetic spin-locking of opticalsurface waves. T...
Efficient on-chip manipulation of photon spin is of crucial importance in developing future integrat...
Spin-dependent, directional light-matter interactions form the basis of chiral quantum networks. In ...
International audienceAs any physical particle or object, light undergoing a circular trajectory fea...
International audienceSubwavelength plasmonic waveguides show the unique ability of strongly localiz...
Spin-dependent, directional light–matter interactions form the basis of chiral quantum networks. In ...
An ultra-compact and ultra-broadband polarization-selective bidirectional vertical coupler is propos...
As any physical particle or object, light undergoing a circular trajectory features a constant extri...
The authors acknowledge the support of the Canada Excellence Research Chairs Program.Light beams wit...
Directional coupling of light in nanophotonic circuits has recently attracted increasing interest, w...
The investigations on optical angular momenta and their interactions have broadened our knowledge of...
Metasurfaces, as a two-dimensional (2D) version of metamaterials, have drawn considerable attention ...
In this project, two contributions are reported. Firstly, the directional and singular generation of...
This thesis focuses on the manipulation of the angular momentum of light at the nanoscale.The total ...
We report strongly non-reciprocal behaviour for quantum dot exciton spins coupled to nano-photonic w...
International audience<span id="top">We study the magnetic spin-locking of opticalsurface waves. T...