Publication | Open Access
Electrical Reservoirs for Bilayer Excitons
39
Citations
35
References
2018
Year
Equal Low DensitiesEngineeringTunneling MicroscopyPhysicsNatural SciencesExciton FluidsApplied PhysicsQuantum MaterialsCondensed Matter PhysicsElectrical ReservoirsLow-dimensional SystemExciton FluidQuantum ChemistryCharge Carrier TransportCharge TransportTopological HeterostructuresElectron Physic
The ground state of two-dimensional (2D) electron systems with equal low densities of electrons and holes in nearby layers is an exciton fluid. We show that a reservoir for excitons can be established by contacting the two layers separately and maintaining the chemical potential difference at a value less than the spatially indirect band gap, thereby avoiding the presence of free carriers in either layer. Equilibration between the exciton fluid and the contacts proceeds via a process involving virtual intermediate states in which an unpaired electron or hole virtually occupies a free carrier state in one of the 2D layers. We derive an approximate relationship between the exciton-contact equilibration rate and the electrical conductances between the contacts and individual 2D layers when the contact chemical potentials align with the free-carrier bands, and explain how electrical measurements can be used to measure thermodynamic properties of the exciton fluids.
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