Quantum Zeno dynamics induced atomic entanglement in a hybrid atom-cavity-fiber system
arXiv:2008.00982 · doi:10.1088/1612-202X/abac14
Abstract
Quantum entanglement is important quanum resources in quantum information sicence. Here we propose an approach to {preparing} atomic quantum entanglement in a hybrid atom-cavity-fiber system. Using quantum Zeno dynamics method, the system evolution states are always split into a series of Zeno invariant {subspaces} consisting of dark and bright states. By choosing the initial state of the system, the bright states are all neglected and only dark states are kept to build the effective Hamiltonian. By tuning the system parameters, two-atom multiple-dimensional entanglement, two-atom Bell state, and three-atom GHZ state can be realized by one step. Our proposal provides a way to perform quantum information processing with dark states.
7 pages
References in corpus (8)
- Quantum technologies with hybrid systems
- Distributed quantum computation via optical fibres
- Multiatom and resonant interaction scheme for quantum state transfer and logical gates between two remote cavities via an optical fiber
- Fast and noise-resistant implementation of quantum phase gates and creation of quantum entangled states
- Deterministic generation of large cluster states using non-deterministic collective measurements based on quantum Zeno effect
- Virtual-photon-induced quantum phase gates for two distant atoms trapped in separate cavities
- Observation of dressed states of distant atoms with delocalized photons in coupled-cavities quantum electrodynamics
- Zeno logic gates using micro-cavities