Cavity Quantum Electrodynamics with a Rydberg blocked atomic ensemble
arXiv:1006.3633 · doi:10.1103/PhysRevA.82.053832
Abstract
We propose to implement the Jaynes-Cummings model by coupling a few-micrometer large atomic ensemble to a quantized cavity mode and classical laser fields. A two-photon transition resonantly couples the single-atom ground state |g> to a Rydberg state |e> via a non-resonant intermediate state |i>, but due to the interaction between Rydberg atoms only a single atom can be resonantly excited in the ensemble. This restricts the state space of the ensemble to the collective ground state |G> and the collectively excited state |E> with a single Rydberg excitation distributed evenly on all atoms. The collectively enhanced coupling of all atoms to the cavity field with coherent coupling strengths which are much larger than the decay rates in the system leads to the strong coupling regime of the resulting effective Jaynes-Cummings model. We use numerical simulations to show that the cavity transmission can be used to reveal detailed properties of the Jaynes-Cummings ladder of excited states, and that the atomic nonlinearity gives rise to highly non-trivial photon emission from the cavity. Finally, we suggest that the absence of interactions between remote Rydberg atoms may, due to a combinatorial effect, induce a cavity-assisted excitation blockade whose range is larger than the typical Rydberg dipole-dipole interaction length.
9 pages, 6 figures
References in corpus (18)
- The Quantum Internet
- Strong atom-field coupling for Bose-Einstein condensates in an optical cavity on a chip
- Reconstruction of non-classical cavity field states with snapshots of their decoherence
- Cavity Opto-Mechanics with a Bose-Einstein Condensate
- Cavity QED with a Bose-Einstein condensate
- Climbing the Jaynes-Cummings Ladder and Observing its Sqrt(n) Nonlinearity in a Cavity QED System
- Cooperative atom-light interaction in a blockaded Rydberg ensemble
- Progressive field-state collapse and quantum non-demolition photon counting
- Evidence for coherent collective Rydberg excitation in the strong blockade regime
- Consequences of Zeeman Degeneracy for van der Waals Blockade between Rydberg Atoms
- Nonlinear response of the vacuum Rabi resonance
- Cavity Nonlinear Optics at Low Photon Numbers from Collective Atomic Motion
- Quantum gates and multi-particle entanglement by Rydberg excitation blockade and adiabatic passage
- Quantum computing with an electron spin ensemble
- Nonlinear spectroscopy of photons bound to one atom
- Quantum critical behavior in strongly interacting Rydberg gases
- Quantum computing with collective ensembles of multi-level systems
- Process tomography of field damping and measurement of Fock state lifetimes by quantum non-demolition photon counting in a cavity
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