Abstract Semiconductor excitations can hybridize with cavity photons to form exciton-polaritons (EPs) with remarkable properties, including light-like energy flow combined with matter-like interactions. To fully harness these properties, EPs must retain ballistic, coherent transport despite matter-mediated interactions with lattice phonons. Here we develop a nonlinear momentum-resolved optical approach that directly images EPs in real space on femtosecond scales in a range of polaritonic architectures. We focus our analysis on EP propagation in layered halide perovskite microcavities. We reveal that EP–phonon interactions lead to a large renormalization of EP velocities at high excitonic fractions at room temperature. Despite these strong E...
Exciton-polaritons offer a versatile platform for realization of all-optical integrated logic gates ...
Modifying the photonic environment of a semiconductor quantum well by embedding it in a high-reflect...
Two-dimensional semiconductors inside optical microcavities have emerged as a versatile platform to ...
Systems supporting exciton-polaritons represent solid-state optical platforms with a strong built-in...
In recent years it has become clear that the transport of excitons and charge carriers in molecular ...
Systems supporting exciton-polaritons represent solid-state optical platforms with a strong built-in...
Exciton-polaritons represent a promising platform for studying quantum fluids of light and realizing...
Two-dimensional (2D) organic–inorganic perovskite semiconductors with natural multiquantum well stru...
International audienceExciton-polaritons are mixed light–matter excitations resulting from the stron...
Ultrafast all-optical switches and integrated circuits call for giant optical nonlinearity to minimi...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
International audienceAbstract Strong-coupling between excitons and confined photonic modes can lead...
We present a quantitative study of the nonlinear optical response of layered perovskites placed insi...
Strong-coupling between excitons and confined photonic modes can lead to the formation of new quasi-...
The strong coupling of an excitonic transition with an electromagnetic mode results in composite qua...
Exciton-polaritons offer a versatile platform for realization of all-optical integrated logic gates ...
Modifying the photonic environment of a semiconductor quantum well by embedding it in a high-reflect...
Two-dimensional semiconductors inside optical microcavities have emerged as a versatile platform to ...
Systems supporting exciton-polaritons represent solid-state optical platforms with a strong built-in...
In recent years it has become clear that the transport of excitons and charge carriers in molecular ...
Systems supporting exciton-polaritons represent solid-state optical platforms with a strong built-in...
Exciton-polaritons represent a promising platform for studying quantum fluids of light and realizing...
Two-dimensional (2D) organic–inorganic perovskite semiconductors with natural multiquantum well stru...
International audienceExciton-polaritons are mixed light–matter excitations resulting from the stron...
Ultrafast all-optical switches and integrated circuits call for giant optical nonlinearity to minimi...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
International audienceAbstract Strong-coupling between excitons and confined photonic modes can lead...
We present a quantitative study of the nonlinear optical response of layered perovskites placed insi...
Strong-coupling between excitons and confined photonic modes can lead to the formation of new quasi-...
The strong coupling of an excitonic transition with an electromagnetic mode results in composite qua...
Exciton-polaritons offer a versatile platform for realization of all-optical integrated logic gates ...
Modifying the photonic environment of a semiconductor quantum well by embedding it in a high-reflect...
Two-dimensional semiconductors inside optical microcavities have emerged as a versatile platform to ...