Two-Dimensional Electrostatic Lattices for Indirect Excitons
arXiv:1109.6659 · doi:10.1063/1.3682302
Abstract
We report on a method for the realization of two-dimensional electrostatic lattices for excitons using patterned interdigitated electrodes. Lattice structure is set by the electrode pattern and depth of the lattice potential is controlled by applied voltages. We demonstrate square, hexagonal, and honeycomb lattices created by this method.
4 pages, 3 figures. Main text and supplementary information
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Cited by in corpus (26)
- Spontaneous coherence in spatially extended photonic systems: Non-Equilibrium Bose-Einstein condensation
- Optically Controlled Excitonic Transistor
- Extended Bose-Hubbard model with dipolar excitons
- Transport of Indirect Excitons in a Potential Energy Gradient
- Transport and localization of indirect excitons in a van der Waals heterostructure
- Transport of dipolar excitons in (Al,Ga)N/GaN quantum wells
- Ballistic spin transport in exciton gases
- Voltage-controlled long-range propagation of indirect excitons in van der Waals heterostructure
- Measurement of exciton correlations using electrostatic lattices
- Pattern Formation in the Exciton Inner Ring
- Observation of the exciton Mott transition in the photoluminescence of coupled quantum wells
- Theory of condensation of indirect excitons in a trap
- Fluctuation and Commensurability Effect of Exciton Density Wave
- Indirect excitons in a potential energy landscape created by a perforated electrode
- High-mobility indirect excitons in wide single quantum well
- Confocal shift interferometry of coherent emission from trapped dipolar excitons
- Quasi-condensation of bilayer excitons in a periodic potential
- Split-gate device for indirect excitons
- Plasmonic photonic crystal mirror for long-lived interlayer exciton generation
- Spatially and time-resolved imaging of transport of indirect excitons in high magnetic fields
- Anisotropic superfluidity of two-dimensional excitons in a periodic potential
- A Microscopic Lattice for Two-dimensional Dipolar Excitons
- Coherent exciton transport in semiconductors
- Observations of indirect exciton trapping in one- and two-dimensional magnetic lattices
- Many body population trapping in ultracold dipolar gases
- Quantum control of exciton motion in electric field