Strong coupling between light and matter can be engineered to influence their properties and behaviour. Here, the authors demonstrate the evolution from weak to ultrastrong coupling of microcavity modes and optical phonons with hexagonal boron nitride layers in a Fabry-Perot resonator
Conventional optical components are limited to size scales much larger than the wavelength of light,...
International audienceIn the regime of strong coupling between molecular excitons and confined optic...
The strength of interaction between light and matter states is characterised by the Rabi frequency Ω...
[EN]Strong coupling between light and matter can be engineered to influence their properties and beh...
Strong coupling between molecular vibrations and microcavity modes has been demonstrated to modify p...
Resumen del trabajo presentado a la Conferencia Española de Nanofotónica (CEN), celebrada en Vigo de...
Phonon polaritons in van der Waals materials reveal significant confinement accompanied with long pr...
Hexagonal boron nitride has been proposed as an excellent candidate to achieve subwavelength infrare...
Enhanced light-matter interactions are the basis of surface-enhanced infrared absorption (SEIRA) spe...
Polaritons formed by the coupling of light and material excitations enable light-matter interactions...
We predict the existence of confined transverse electric (TE) phonon polaritons in an ultrathin hexa...
A phonoriton is an elementary excitation that is predicted to emerge from hybridization between exci...
Microcavity exciton-polaritons, semiconductor quasiparticles that are a unique mixture of light and ...
Data used to produce the figures in the Menghrajani and Barnes (2020) article "Strong coupling beyon...
Dibenzo[hi,st]ovalene (DBOV)—a quasi-zero-dimensional “nanographene”—displays strong, narrow, and we...
Conventional optical components are limited to size scales much larger than the wavelength of light,...
International audienceIn the regime of strong coupling between molecular excitons and confined optic...
The strength of interaction between light and matter states is characterised by the Rabi frequency Ω...
[EN]Strong coupling between light and matter can be engineered to influence their properties and beh...
Strong coupling between molecular vibrations and microcavity modes has been demonstrated to modify p...
Resumen del trabajo presentado a la Conferencia Española de Nanofotónica (CEN), celebrada en Vigo de...
Phonon polaritons in van der Waals materials reveal significant confinement accompanied with long pr...
Hexagonal boron nitride has been proposed as an excellent candidate to achieve subwavelength infrare...
Enhanced light-matter interactions are the basis of surface-enhanced infrared absorption (SEIRA) spe...
Polaritons formed by the coupling of light and material excitations enable light-matter interactions...
We predict the existence of confined transverse electric (TE) phonon polaritons in an ultrathin hexa...
A phonoriton is an elementary excitation that is predicted to emerge from hybridization between exci...
Microcavity exciton-polaritons, semiconductor quasiparticles that are a unique mixture of light and ...
Data used to produce the figures in the Menghrajani and Barnes (2020) article "Strong coupling beyon...
Dibenzo[hi,st]ovalene (DBOV)—a quasi-zero-dimensional “nanographene”—displays strong, narrow, and we...
Conventional optical components are limited to size scales much larger than the wavelength of light,...
International audienceIn the regime of strong coupling between molecular excitons and confined optic...
The strength of interaction between light and matter states is characterised by the Rabi frequency Ω...