Multi-qubit Quantum Rabi Model and Multi-partite Entangled States in a Circuit QED System
arXiv:1902.10036 · doi:10.1038/s41598-018-35751-3
Abstract
Multi-qubit quantum Rabi model, which is a fundamental model describing light-matter interaction, plays an important role in various physical systems. In this paper, we propose a theoretical method to simulate multi-qubit quantum Rabi model in a circuit quantum electrodynamics system. By means of external transversal and longitudinal driving fields, an effective Hamiltonian describing the multi-qubit quantum Rabi model is derived. The effective frequency of the resonator and the effective splitting of the qubits depend on the external driving fields. By adjusting the frequencies and the amplitudes of the driving fields, the stronger coupling regimes could be reached. The numerical simulation shows that our proposal works well in a wide range of parameter space. Moreover, our scheme can be utilized to generate two-qubit gate, Schrödinger states, and multi-qubit GHZ states. The maximum displacement of the Schrödinger cat states can be enhanced by increasing the number of the qubits and the relative coupling strength. It should be mention that we can obtain high fidelity Schrödinger cat states and multi-qubit GHZ states even the system suffering dissipation. The presented proposal may open a way to study the stronger coupling regimes whose coupling strength is far away from ultrastrong coupling regimes.
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References in corpus (19)
- Beyond the Jaynes-Cummings model: circuit QED in the ultrastrong coupling regime
- The Magnus expansion and some of its applications
- Deep Strong Coupling Regime of the Jaynes-Cummings model
- Generalized rotating-wave approximation for arbitrarily large coupling
- Fast and robust two-qubit gates for scalable ion trap quantum computing
- Ultrastrong coupling regime of cavity QED with phase-biased flux qubits
- Tunable coupling in circuit quantum electrodynamics with a superconducting V-system
- Quantum Zeno and Anti-Zeno Effect without Rotating Wave Approximation
- Ion trap quantum gates with amplitude-modulated laser beams
- Deterministic entanglement of ions in thermal states of motion
- Nonclassical Radiation from Thermal Cavities in the Ultrastrong Coupling Regime
- Quantum anti-Zeno effect without rotating wave approximation
- A scheme for unconventional geometric quantum computation in cavity QED
- Creation of quantum error correcting codes in the ultrastrong coupling regime
- Observing pure effects of counter-rotating terms without ultrastrong coupling: A single photon can simultaneously excite two qubits
- Matrix realignment and partial transpose approach to entangling power of quantum evolutions
- Vacuum Rabi oscillation induced by virtual photons in the ultrastrong coupling regime
- Absence of collapse in quantum Rabi oscillations
- Preparing ground states and squeezed states of nanomechanical cantilevers by fast dissipation