Efficient entanglement generation between exciton-polaritons using shortcuts to adiabaticity
arXiv:1805.07129 · doi:10.1364/OL.43.003313
Abstract
We use shortcuts to adiabaticity, a method introduced to speed up adiabatic quantum dynamics, for the efficient generation of entanglement between exciton-polaritons in coupled semiconductor microcavities. A substantial improvement is achieved, compared to a recently proposed method which essentially enhances the nonlinearity of the system. Our method takes advantage of a time-dependent nonlinearity which can become larger than the Josephson coupling between the cavities, while the conventional method is restricted to a constant nonlinearity lower than the coupling. The suggested procedure is expected to find also application in other research areas in optics, where nonlinear interacting bosons are encountered.
References in corpus (10)
- Exciton-polariton condensates
- Single photons from coupled quantum modes
- Determination of continuous variable entanglement by purity measurements
- Spin order and phase transitions in chains of polariton condensates
- Quantum entanglement in the spatial symmetry breaking phase transition of a driven-dissipative Bose-Hubbard dimer
- A Polariton Graph Simulator
- Noise Resistant Quantum Control Using Dynamical Invariants
- Design of a Photonic Lattice Using Shortcuts to Adiabaticity
- Maximizing entanglement in bosonic Josephson junctions using shortcuts to adiabaticity and optimal control
- Quantum Exciton-Polariton Networks through Inverse Four-Wave Mixing
Cited by in corpus (4)
- Efficient Generation of the Triplet Bell State Between Coupled Spins Using Transitionless Quantum Driving and Optimal Control
- Entangling Excitons with Microcavity Photons
- Fast control of interactions in an ultracold two atom system: Managing correlations and irreversibility
- Numerical detection of Gaussian entanglement and its application to the identification of bound entangled Gaussian states