Floquet control of dipolaritons in quantum wells
arXiv:1706.04494 · doi:10.1364/OL.42.002398
Abstract
We developed the theory of dipolaritons in semiconductor quantum wells irradiated by an off-resonant electromagnetic wave (dressing field). Solving the Floquet problem for the dressed dipolaritons, we demonstrated that the field drastically modifies all dipolaritonic properties. In particular, the dressing field strongly effects on terahertz emission from the considered system. The described effect paves the way for optical control of prospective dipolariton-based terahertz devices.
Published version
References in corpus (9)
- Quantum fluids of light
- The Magnus expansion and some of its applications
- Transport properties of a two-dimensional electron gas dressed by light
- Dynamic Stark Effect in Strongly Coupled Microcavity Exciton-Polaritons
- Triggered single photon emitters based on stimulated parametric scattering in weakly nonlinear systems
- Effective interaction and condensation of dipolaritons in coupled quantum wells
- Optically induced Aharonov-Bohm effect in mesoscopic rings
- Dipolar polaritons in microcavity-embedded coupled quantum wells in electric and magnetic fields
- Adiabatic preparation of a cold exciton condensate