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arxiv: 1902.02974 · v1 · pith:4FL47WX5new · submitted 2019-02-08 · ⚛️ physics.app-ph · cond-mat.mes-hall· cond-mat.quant-gas

Dipolar excitons offer a rich playground for both design of novel optoelectronic devices and fundamental many-body physics

classification ⚛️ physics.app-ph cond-mat.mes-hallcond-mat.quant-gas
keywords dipolarexcitonsdesigndevicesfundamentalmany-bodynoveloffer
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Dipolar excitons offer a rich playground for both design of novel optoelectronic devices and fundamental many-body physics. Wide GaN/(AlGa)N quantum wells host a new and promising realization of dipolar excitons. We demonstrate the in-plane confinement and cooling of these excitons, when trapped in the electrostatic potential created by semitransparent electrodes of various shapes deposited on the sample surface. This result is a prerequisite for the electrical control of the exciton densities and fluxes, as well for studies of the complex phase diagram of these dipolar bosons at low temperature.

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