We present a microscopic calculation of spatially indirect exciton states in semiconductor coupled quantum wells and polaritons formed from their coupling to the optical mode of a microcavity. We include the presence of electric and magnetic fields applied perpendicular to the quantum well plane. Our model predicts the existence of polaritons that are in the strong-coupling regime and at the same time possess a large static dipole moment. We demonstrate, in particular, that a magnetic field can compensate for the reduction in light-matter coupling that occurs when an electric field impresses a dipole moment on the polariton
Abstract. Dipolaritons are quasiparticles that arise in coupled quantum wells embedded in a microca...
The observation of spin-related phenomena of microcavity polaritons has been limited due to the weak...
Room temperature Bose-Einstein condensation and electrically injected ultra-low threshold exciton-po...
We present a microscopic calculation of spatially indirect exciton states in semiconductor coupled q...
We present a precise calculation of spatially-indirect exciton states in semiconductor coupled quant...
Excitons and microcavity polaritons that possess a macroscopic dipole alignment are attractive syste...
We demonstrate an efficient switching between strong and weak exciton-photon coupling regimes in mic...
The dipole coupling strength g between cavity photons and quantum well excitons determines the regim...
This thesis presents a theoretical investigation of exciton polaritons in strongly-coupled exciton-p...
We report on pronounced magneto-optical effects of trapped polariton modes in a single InGaAs quantu...
We theoretically investigate exciton-polaritons in a two-dimensional (2D) semiconductor heterostruct...
We detail the influence of a magnetic field on exciton-polaritons inside a semiconductor microcavity...
S. T. acknowledges the financial support of the Stavros Niarchos Foundation within the framework of ...
Recent work on strong coupling exciton–polariton phenomena in single and coupled microcavities is pr...
Polaritons are lightweight bosonic quasiparticles that result from the strong coupling of light with...
Abstract. Dipolaritons are quasiparticles that arise in coupled quantum wells embedded in a microca...
The observation of spin-related phenomena of microcavity polaritons has been limited due to the weak...
Room temperature Bose-Einstein condensation and electrically injected ultra-low threshold exciton-po...
We present a microscopic calculation of spatially indirect exciton states in semiconductor coupled q...
We present a precise calculation of spatially-indirect exciton states in semiconductor coupled quant...
Excitons and microcavity polaritons that possess a macroscopic dipole alignment are attractive syste...
We demonstrate an efficient switching between strong and weak exciton-photon coupling regimes in mic...
The dipole coupling strength g between cavity photons and quantum well excitons determines the regim...
This thesis presents a theoretical investigation of exciton polaritons in strongly-coupled exciton-p...
We report on pronounced magneto-optical effects of trapped polariton modes in a single InGaAs quantu...
We theoretically investigate exciton-polaritons in a two-dimensional (2D) semiconductor heterostruct...
We detail the influence of a magnetic field on exciton-polaritons inside a semiconductor microcavity...
S. T. acknowledges the financial support of the Stavros Niarchos Foundation within the framework of ...
Recent work on strong coupling exciton–polariton phenomena in single and coupled microcavities is pr...
Polaritons are lightweight bosonic quasiparticles that result from the strong coupling of light with...
Abstract. Dipolaritons are quasiparticles that arise in coupled quantum wells embedded in a microca...
The observation of spin-related phenomena of microcavity polaritons has been limited due to the weak...
Room temperature Bose-Einstein condensation and electrically injected ultra-low threshold exciton-po...