arXiv · 2311.04074
Keldysh field theory of dynamical exciton condensation transitions in nonequilibrium electron-hole bilayers
Abstract
Recent experiments have realized steady-state electrical injection of interlayer excitons in electron-hole bilayers subject to a large bias voltage. In the ideal case in which interlayer tunneling is negligibly weak, the system is in quasi-equilibrium with a reduced effective band gap. Interlayer tunneling introduces a current and drives the system out of equilibrium. In this work we derive a nonequilibrium field theory description of interlayer excitons in biased electron-hole bilayers. In the large bias limit, we find that p-wave interlayer tunneling reduces the effective band gap and increases the effective temperature for intervalley excitons. We discuss possible experimental implications for InAs/GaSb quantum wells and transition metal dichalcogenide bilayers.
Explore related subjects
Keep this discovery
Yongxin Zeng, Valentin Crépel, Andrew J. Millis. 2023-11-07. Keldysh field theory of dynamical exciton condensation transitions in nonequilibrium electron-hole bilayers. https://doi.org/10.1103/physrevlett.132.266001
Cite the original work for its findings. Save a collection to share your selection of sources.