The rise of quantum science and technologies motivates photonics research to seek new platforms with strong light-matter interactions to facilitate quantum behaviors at moderate light intensities. One promising platform to reach such strong light-matter interacting regimes is offered by polaritonic metasurfaces, which represent ultrathin artificial media structured on nano-scale and designed to support polaritons - half-light half-matter quasiparticles. Topological polaritons, or 'topolaritons', offer an ideal platform in this context, with unique properties stemming from topological phases of light strongly coupled with matter. Here we explore polaritonic metasurfaces based on 2D transition metal dichalcogenides (TMDs) supporting in-plane ...
We experimentally demonstrate strong exciton-photon coupling in a MoSe2/hBN heterostructure interfac...
The authors thank R. Thomale for fruitful discussions. S.K. acknowledges the European Commission for...
he Würzburg group acknowledges support by the state of Bavaria. C.S. acknowledges support by the Eur...
The rise of quantum science and technologies motivates photonics research to seek new platforms with...
The rise of quantum science and technologies motivates photonics research to seek new platforms with...
Strong light-matter interactions enable unique nonlinear and quantum phenomena at moderate light int...
In this work light and matter have been coupled in a strong interaction between exciton resonances a...
The locking of the electron spin to the valley degree of freedom in transition metal dichalcogenide...
C.S. acknowledges support by the ERC (Project unLiMIt-2D). The Würzburg group acknowledges support b...
Two-dimensional transition metal dichalcogenides (TMDs) provide a unique possibility to generate and...
Monolayer transition-metal dichalcogenides (TMDs) are the first truly two-dimensional (2D) semicondu...
Strong interaction between photons and excitons in semiconductors results in the formation of half-l...
Strong interaction between photons and excitons in semiconductors results in the formation of half-l...
Strong interaction between photons and excitons in semiconductors results in the formation of half-l...
The interaction between light and matter can give rise to novel topological states. This principle w...
We experimentally demonstrate strong exciton-photon coupling in a MoSe2/hBN heterostructure interfac...
The authors thank R. Thomale for fruitful discussions. S.K. acknowledges the European Commission for...
he Würzburg group acknowledges support by the state of Bavaria. C.S. acknowledges support by the Eur...
The rise of quantum science and technologies motivates photonics research to seek new platforms with...
The rise of quantum science and technologies motivates photonics research to seek new platforms with...
Strong light-matter interactions enable unique nonlinear and quantum phenomena at moderate light int...
In this work light and matter have been coupled in a strong interaction between exciton resonances a...
The locking of the electron spin to the valley degree of freedom in transition metal dichalcogenide...
C.S. acknowledges support by the ERC (Project unLiMIt-2D). The Würzburg group acknowledges support b...
Two-dimensional transition metal dichalcogenides (TMDs) provide a unique possibility to generate and...
Monolayer transition-metal dichalcogenides (TMDs) are the first truly two-dimensional (2D) semicondu...
Strong interaction between photons and excitons in semiconductors results in the formation of half-l...
Strong interaction between photons and excitons in semiconductors results in the formation of half-l...
Strong interaction between photons and excitons in semiconductors results in the formation of half-l...
The interaction between light and matter can give rise to novel topological states. This principle w...
We experimentally demonstrate strong exciton-photon coupling in a MoSe2/hBN heterostructure interfac...
The authors thank R. Thomale for fruitful discussions. S.K. acknowledges the European Commission for...
he Würzburg group acknowledges support by the state of Bavaria. C.S. acknowledges support by the Eur...