Unidirectional photonic edge states arise at the interface between two topologically distinct photonic crystals. Here, we demonstrate a micrometer-scale GaAs photonic ring resonator, created using a spin Hall-type topological photonic crystal waveguide. Embedded InGaAs quantum dots are used to probe the mode structure of the device. We map the spatial profile of the resonator modes and demonstrate the control of the mode confinement through tuning of the photonic crystal lattice parameters. The intrinsic chirality of the edge states makes them of interest for applications in integrated quantum photonics, and the resonator represents an important building block toward the development of such devices with embedded quantum emitters
The introduction of topological concepts to the design of photonic crystal cavities holds great prom...
The study of topological phases of light underpins a promising paradigm for engineering disorder-imm...
Topological photonics is the study of how the geometries and topologies of devices can be used to ma...
Topological photonic interfaces support topologically nontrivial optical modes with helical characte...
This thesis describes the development and experimental investigation of a series of III-V semiconduc...
The integration of quantum emitters within topological nano-photonic devices opens up new avenues fo...
Concepts of topology arise in condensed matter physics when considering states at the boundary of a ...
Under the influence of a magnetic field, at low temperatures, charged particles confined in two-dime...
Recent technological advances in integrated photonics have spurred on the study of topological pheno...
© 2019 American Physical Society.We experimentally realize a photonic analogue of the anomalous quan...
Ultra-compact topological ring-resonators with chirality are important devices for quantum optics. H...
A unidirectional chiral edge mode in photonic topological insulators can be selectively excited by a...
Topological protection in photonics offers new prospects for guiding and manipulating classical and ...
We experimentally realize a photonic analogue of the anomalous quantum Hall insulator using a two-di...
The field of topological photonics has seen tremendous and wide‐ranging developments in recent years...
The introduction of topological concepts to the design of photonic crystal cavities holds great prom...
The study of topological phases of light underpins a promising paradigm for engineering disorder-imm...
Topological photonics is the study of how the geometries and topologies of devices can be used to ma...
Topological photonic interfaces support topologically nontrivial optical modes with helical characte...
This thesis describes the development and experimental investigation of a series of III-V semiconduc...
The integration of quantum emitters within topological nano-photonic devices opens up new avenues fo...
Concepts of topology arise in condensed matter physics when considering states at the boundary of a ...
Under the influence of a magnetic field, at low temperatures, charged particles confined in two-dime...
Recent technological advances in integrated photonics have spurred on the study of topological pheno...
© 2019 American Physical Society.We experimentally realize a photonic analogue of the anomalous quan...
Ultra-compact topological ring-resonators with chirality are important devices for quantum optics. H...
A unidirectional chiral edge mode in photonic topological insulators can be selectively excited by a...
Topological protection in photonics offers new prospects for guiding and manipulating classical and ...
We experimentally realize a photonic analogue of the anomalous quantum Hall insulator using a two-di...
The field of topological photonics has seen tremendous and wide‐ranging developments in recent years...
The introduction of topological concepts to the design of photonic crystal cavities holds great prom...
The study of topological phases of light underpins a promising paradigm for engineering disorder-imm...
Topological photonics is the study of how the geometries and topologies of devices can be used to ma...