Quantum fluids of light are realized in semiconductor microcavities using exciton-polaritons, solid-state quasi-particles with a light mass and sizeable interactions. Here, we use the microscopic analogue of oceanographic techniques to measure the excitation spectrum of a thermalised polariton condensate. Increasing the fluid density, we demonstrate the transition from a free-particle parabolic dispersion to a linear, sound-like Goldstone mode characteristic of superfluids at equilibrium. Notably, we reveal the effect of an asymmetric pumping by showing that collective excitations are created with a definite direction with respect to the condensate. Furthermore, we measure the critical sound speed for polariton superfluids close to equilibr...
Microcavity polaritons are two-dimensional bosonic fluids with strong nonlinearities, composed of co...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2017.Cataloged from ...
Macroscopic quantum states can be easily created and manipulated within semiconductor microcavity ch...
25 figures, 16 pages longWe present a description of the non-equilibrium properties of a microcavity...
We investigate the two-dimensional motion of polaritons injected into a planar microcavity by a cont...
Semiconductor microcavities offer unique systems in which to investigate the physics of weakly inter...
After the observation of Bose-Einstein condensation in the solid state in 2006 and the demonstration...
Over the last two decades, the system of exciton-polaritons (polaritons) in a semiconductor microcav...
Superfluidity—the suppression of scattering in a quantum fluid at velocities below a critical value—...
We use a recently developed high-resolution coherent probe spectroscopy method to investigate the di...
Modifying the photonic environment of a semiconductor quantum well by embedding it in a high-reflect...
Microcavity exciton polaritons, the fundamental optical excitations of semiconductor microcavities w...
Exciton polaritons are half-light half-matter quasi-particles which have been the subject of very ex...
Using an angle-resolved heterodyne four-wave-mixing technique, we probe the low momentum excitation ...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
Microcavity polaritons are two-dimensional bosonic fluids with strong nonlinearities, composed of co...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2017.Cataloged from ...
Macroscopic quantum states can be easily created and manipulated within semiconductor microcavity ch...
25 figures, 16 pages longWe present a description of the non-equilibrium properties of a microcavity...
We investigate the two-dimensional motion of polaritons injected into a planar microcavity by a cont...
Semiconductor microcavities offer unique systems in which to investigate the physics of weakly inter...
After the observation of Bose-Einstein condensation in the solid state in 2006 and the demonstration...
Over the last two decades, the system of exciton-polaritons (polaritons) in a semiconductor microcav...
Superfluidity—the suppression of scattering in a quantum fluid at velocities below a critical value—...
We use a recently developed high-resolution coherent probe spectroscopy method to investigate the di...
Modifying the photonic environment of a semiconductor quantum well by embedding it in a high-reflect...
Microcavity exciton polaritons, the fundamental optical excitations of semiconductor microcavities w...
Exciton polaritons are half-light half-matter quasi-particles which have been the subject of very ex...
Using an angle-resolved heterodyne four-wave-mixing technique, we probe the low momentum excitation ...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
Microcavity polaritons are two-dimensional bosonic fluids with strong nonlinearities, composed of co...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2017.Cataloged from ...
Macroscopic quantum states can be easily created and manipulated within semiconductor microcavity ch...