We study the effect of photonic spin-orbit coupling (SOC) in micropillar lattices on the topological edge states of a one-dimensional chain with a zigzag geometry, corresponding to the Su-Schrieffer-Heeger model equipped with an additional internal degree of freedom. The system combines the strong hopping anisotropy of the p-type pillar modes with the large TE-TM splitting in Bragg microcavities. By resolving the photoluminescence emission in energy and polarization we probe the effects of the resulting SOC on the spatial and spectral properties of the edge modes. We find that the edge modes feature a fine structure of states that penetrate by different amounts into the bulk of the chain, depending on the strength of the SOC terms present, ...
Under the influence of a magnetic field, at low temperatures, charged particles confined in two-dime...
We study a plasmonic metasurface that supports pseudospin-dependent edge states confined at a subwav...
We study the unconventional topological phases of polaritons inside a cavity waveguide, demonstratin...
We study the effect of photonic spin-orbit coupling (SOC) in micropillar lattices on the topological...
Topological protection in photonics offers new prospects for guiding and manipulating classical and ...
International audienceWe use coupled micropillars etched out of a semiconductor microcavity to engin...
Experimental data supporting figures shown in the preprint https://arxiv.org/abs/1812.02034Journal r...
We predict that the interplay between the spin-orbit coupling, stemming from the transverse electric...
Light-matter interaction is crucial to both understanding fundamental phenomena and developing versa...
We study theoretically a dimer chain in the presence of Rashba-Dresselhaus spin-orbit coupling (RDSO...
Unidirectional photonic edge states arise at the interface between two topologically distinct photon...
Spin-orbit coupling (SOC) of light plays a fundamental photophysics that is important for various fi...
The control and active manipulation of spin-orbit coupling (SOC) in photonic systems is fundamental ...
We address the inhibition of tunneling in polariton condensates confined in a potential landscape cr...
This is the final version. Available from the American Physical Society via the DOI in this recordWe...
Under the influence of a magnetic field, at low temperatures, charged particles confined in two-dime...
We study a plasmonic metasurface that supports pseudospin-dependent edge states confined at a subwav...
We study the unconventional topological phases of polaritons inside a cavity waveguide, demonstratin...
We study the effect of photonic spin-orbit coupling (SOC) in micropillar lattices on the topological...
Topological protection in photonics offers new prospects for guiding and manipulating classical and ...
International audienceWe use coupled micropillars etched out of a semiconductor microcavity to engin...
Experimental data supporting figures shown in the preprint https://arxiv.org/abs/1812.02034Journal r...
We predict that the interplay between the spin-orbit coupling, stemming from the transverse electric...
Light-matter interaction is crucial to both understanding fundamental phenomena and developing versa...
We study theoretically a dimer chain in the presence of Rashba-Dresselhaus spin-orbit coupling (RDSO...
Unidirectional photonic edge states arise at the interface between two topologically distinct photon...
Spin-orbit coupling (SOC) of light plays a fundamental photophysics that is important for various fi...
The control and active manipulation of spin-orbit coupling (SOC) in photonic systems is fundamental ...
We address the inhibition of tunneling in polariton condensates confined in a potential landscape cr...
This is the final version. Available from the American Physical Society via the DOI in this recordWe...
Under the influence of a magnetic field, at low temperatures, charged particles confined in two-dime...
We study a plasmonic metasurface that supports pseudospin-dependent edge states confined at a subwav...
We study the unconventional topological phases of polaritons inside a cavity waveguide, demonstratin...