We report multistate optical switching among high-order bouncing-ball modes (“ripples”) and whispering-gallery modes (“petals”) of exciton-polariton condensates in a laser-generated annular trap. By tailoring the diameter and power of the annular trap, the polariton condensate can be switched among different trapped modes, accompanied by redistribution of spatial densities and superlinear increase in the emission intensities, implying that polariton condensates in this geometry could be exploited for an all-optical multistate switch. A model based on non-Hermitian modes of the generalized Gross-Pitaevskii equation reveals that this mode switching arises from competition between pump-induced gain and in-plane polariton loss. The parameters f...
We present a time-resolved study of energy relaxation and trapping dynamics of polariton condensates...
PosterWe study spontaneous formation of regular polariton patterns in quantum-well semiconductor mic...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2017.Cataloged from ...
We show theoretically that an open-dissipative polariton condensate confined within a trapping poten...
Polariton condensates are macroscopic quantum states formed by half-matter half-light quasiparticles...
We investigate, theoretically and numerically, the spin dynamics of a two-component exciton-polarito...
We report on pure-quantum-state polariton condensates in optical annular traps. The study of the und...
We experimentally demonstrate the formation of a macroscopically occupied state (condensation) of ex...
Microcavity-polaritons are quasi-particles formed when light and matter excitations couple strongly ...
We demonstrate experimentally the condensation of exciton polaritons through optical trapping. The n...
Cavity exciton-polaritons1, (polaritons) are bosonic quasi-particles offering a unique solid-state s...
Polaritons are lightweight bosonic quasiparticles that result from the strong coupling of light with...
In 2006 researchers created the first polariton Bose-Einstein condensate at 19K in the solid state. ...
Recent experiments in microcavity polaritons have shown many effects that can be associated with the...
Semiconductor Microcavities in the strong coupling regime are an ideal test bed for studying light m...
We present a time-resolved study of energy relaxation and trapping dynamics of polariton condensates...
PosterWe study spontaneous formation of regular polariton patterns in quantum-well semiconductor mic...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2017.Cataloged from ...
We show theoretically that an open-dissipative polariton condensate confined within a trapping poten...
Polariton condensates are macroscopic quantum states formed by half-matter half-light quasiparticles...
We investigate, theoretically and numerically, the spin dynamics of a two-component exciton-polarito...
We report on pure-quantum-state polariton condensates in optical annular traps. The study of the und...
We experimentally demonstrate the formation of a macroscopically occupied state (condensation) of ex...
Microcavity-polaritons are quasi-particles formed when light and matter excitations couple strongly ...
We demonstrate experimentally the condensation of exciton polaritons through optical trapping. The n...
Cavity exciton-polaritons1, (polaritons) are bosonic quasi-particles offering a unique solid-state s...
Polaritons are lightweight bosonic quasiparticles that result from the strong coupling of light with...
In 2006 researchers created the first polariton Bose-Einstein condensate at 19K in the solid state. ...
Recent experiments in microcavity polaritons have shown many effects that can be associated with the...
Semiconductor Microcavities in the strong coupling regime are an ideal test bed for studying light m...
We present a time-resolved study of energy relaxation and trapping dynamics of polariton condensates...
PosterWe study spontaneous formation of regular polariton patterns in quantum-well semiconductor mic...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2017.Cataloged from ...