We report an extended family of spin textures of zero-dimensional exciton-polaritons spatially confined in tunable open microcavity structures. The transverse-electric-transverse-magnetic (TE-TM) splitting, which is enhanced in the open cavity structures, leads to polariton eigenstates carrying quantized spin vortices. Depending on the strength and anisotropy of the cavity confining potential and of the TE-TM induced splitting, which can be tuned via the excitonic or photonic fractions, the exciton-polariton emissions exhibit either spin-vortex-like patterns or linear polarization, in good agreement with theoretical modeling
A great deal of both theoretically and experimental investigation is currently being devoted into th...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
We report an extended family of spin textures of zero-dimensional exciton-polaritons spatially confi...
We report an extended family of spin textures in coexisting modes of zero-dimensional polariton cond...
We present the quantum theory of momentum and spin relaxation of exciton-polaritons in microcavities...
Photonic spin-orbit (SO) coupling is an important physical mechanism leading to numerous interesting...
From a theoretical point of view, we discuss a variety of phenomena linked to the spin and polarizat...
Unique, polarization sensitive, effects of exciton-polaritons in semiconductor microcav- ities are e...
We study the polarization dynamics of a spatially expanding polariton condensate under nonresonant l...
We study the polarization dynamics of a spatially expanding polariton condensate under nonresonant l...
In this chapter we address a complex set of optical phenomena linked to the spin dynamics of exciton...
We use coupled micropillars etched out of a semiconductor microcavity to engineer a spin-orbit Hamil...
Semiconductor microcavities with embedded quantum wells in the strong light-matter coupling regime h...
A great deal of both theoretically and experimental investigation is currently being devoted into th...
A great deal of both theoretically and experimental investigation is currently being devoted into th...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
We report an extended family of spin textures of zero-dimensional exciton-polaritons spatially confi...
We report an extended family of spin textures in coexisting modes of zero-dimensional polariton cond...
We present the quantum theory of momentum and spin relaxation of exciton-polaritons in microcavities...
Photonic spin-orbit (SO) coupling is an important physical mechanism leading to numerous interesting...
From a theoretical point of view, we discuss a variety of phenomena linked to the spin and polarizat...
Unique, polarization sensitive, effects of exciton-polaritons in semiconductor microcav- ities are e...
We study the polarization dynamics of a spatially expanding polariton condensate under nonresonant l...
We study the polarization dynamics of a spatially expanding polariton condensate under nonresonant l...
In this chapter we address a complex set of optical phenomena linked to the spin dynamics of exciton...
We use coupled micropillars etched out of a semiconductor microcavity to engineer a spin-orbit Hamil...
Semiconductor microcavities with embedded quantum wells in the strong light-matter coupling regime h...
A great deal of both theoretically and experimental investigation is currently being devoted into th...
A great deal of both theoretically and experimental investigation is currently being devoted into th...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...