Dipolar excitons offer a rich playground for both design of novel optoelectronic devices and fundamental many-body physics
Dipolar excitons offer a rich playground for both design of novel optoelectronic devices and fundamental many-body physics
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.
T. Guillet、Y. Cordier、F. Chiaruttini、B. Damilano、S. Chenot、M. Vladimirova、B. Jouault、P. Lefebvre、C. Brimont
物理学光电子技术半导体技术
T. Guillet,Y. Cordier,F. Chiaruttini,B. Damilano,S. Chenot,M. Vladimirova,B. Jouault,P. Lefebvre,C. Brimont.Dipolar excitons offer a rich playground for both design of novel optoelectronic devices and fundamental many-body physics[EB/OL].(2019-02-08)[2025-06-30].https://arxiv.org/abs/1902.02974.点此复制
评论