Flexible and experimentally feasible shortcut to quantum Zeno dynamic passage
arXiv:1608.07884 · doi:10.1016/j.physleta.2016.08.051
Abstract
We propose and discuss a theoretical scheme to speed up Zeno dynamic passage by an external acceleration Hamiltonian. This scheme is a flexible and experimentally feasible acceleration because the acceleration Hamiltonian does not adhere rigidly to an invariant relationship, whereas it can be a more general form . Here can be arbitrarily selected without any limitation, and therefore one can always construct an acceleration Hamiltonian by only using realizable . Applying our scheme, we finally design an experimentally feasible Hamiltonian as an example to speed up an entanglement preparation passage.
References in corpus (7)
- Shortcut to adiabatic passage in two and three level atoms
- A Quantum Gate between a Flying Optical Photon and a Single Trapped Atom
- Tunable ion-photon entanglement in an optical cavity
- A Short Wavelength GigaHertz Clocked Fiber-Optic Quantum Key Distribution System
- Protecting a Spin Ensemble against Decoherence in the Strong-Coupling Regime of Cavity QED
- Shortcut to Adiabaticity in the Lipkin-Meshkov-Glick Model
- Coherent polariton dynamics in coupled highly-dissipative cavity quantum electrodynamics