Two-qubit gates using adiabatic passage of the Stark-tuned Förster resonances in Rydberg atoms
arXiv:1606.08198 · doi:10.1103/PhysRevA.94.062307
Abstract
We propose schemes of controlled-Z and controlled-NOT gates with ultracold neutral atoms based on deterministic phase accumulation during double adiabatic passage of the Stark-tuned Förster resonance of Rydberg states. The effect of deterministic phase accumulation during double adiabatic passage in a two-level quantum system has been analyzed in detail. Adiabatic rapid passage using nonlinearly chirped pulses with rectangle intensity profile has been discussed. Nonlinear time dependence of the energy detuning from the Förster resonance is used to achieve a high fidelity of population transfer between Rydberg states. Fidelity of two-qubit gates has been studied with an example of the Stark-tuned Förster resonance in Cs Rydberg atoms.
10 pages, 7 figures. Version 2 revised according to the referees' comments. Fig.1 replaced in Version 3. Accepted to PRA
References in corpus (14)
- Quantum computing with atomic qubits and Rydberg interactions: Progress and challenges
- High-Fidelity Universal Gate Set for Be Ion Qubits
- Quasiclassical calculations of BBR-induced depopulation rates and effective lifetimes of Rydberg nS, nP and nD alkali-metal atoms with n < 80
- Dipole blockade in a cold Rydberg atomic sample
- Consequences of Zeeman Degeneracy for van der Waals Blockade between Rydberg Atoms
- Quantum gates and multi-particle entanglement by Rydberg excitation blockade and adiabatic passage
- Experimental investigations of the dipolar interactions between single Rydberg atoms
- Coherent dipole-dipole coupling between two single atoms at a Förster resonance
- High-fidelity Rydberg-blockade entangling gate using shaped, analytic pulses
- Spectroscopy of cold rubidium Rydberg atoms for applications in quantum information
- Controlling the interactions of a few cold Rb Rydberg atoms by radiofrequency-assisted Förster resonances
- Applicability of Rydberg atoms to quantum computers
- Stark-tuned Förster resonance and dipole blockade for two to five cold Rydberg atoms: Monte Carlo simulations for various spatial configurations
- Tailoring Rydberg interactions via Förster resonances: state combinations, hopping and angular dependence
Cited by in corpus (37)
- Quantum computing with atomic qubits and Rydberg interactions: Progress and challenges
- High-fidelity parallel entangling gates on a neutral atom quantum computer
- Quantum simulation and computing with Rydberg-interacting qubits
- Molecular polaritons for controlling chemistry with quantum optics
- A concise review of Rydberg atom based quantum computation and quantum simulation
- Symmetric Rydberg controlled-Z gates with adiabatic pulses
- High fidelity entanglement of neutral atoms via a Rydberg-mediated single-modulated-pulse controlled-PHASE gate
- Quantum logic and entanglement by neutral Rydberg atoms: methods and fidelity
- Robust Mølmer-Sørensen gate for neutral atoms using rapid adiabatic Rydberg dressing
- Deutsch, Toffoli, and CNOT Gates via Rydberg Blockade of Neutral Atoms
- Rydberg superatoms: An artificial quantum system for quantum information processing and quantum optics
- Rydberg Quantum Gates Free from Blockade Error
- Robust Rydberg gate via Landau-Zener control of Förster resonance
- Fast, Accurate, and Realizable Two-Qubit Entangling Gates by Quantum Interference in Detuned Rabi Cycles of Rydberg Atoms
- Two-qubit controlled-PHASE Rydberg blockade gate protocol for neutral atoms via off-resonant modulated driving within a single pulse
- Adiabatic passage of radiofrequency-assisted Forster resonances in Rydberg atoms for two-qubit gates and generation of Bell states
- Rydberg-interaction gates via adiabatic passage and phase control of driving fields
- Application of adiabatic passage in Rydberg atomic ensembles for quantum information processing
- Single temporal-pulse-modulated parameterized controlled-phase gate for Rydberg atoms
- Annulled van der Waals interaction and fast Rydberg quantum gates
- Dipole-dipole interaction driven antiblockade of two Rydberg atoms
- One-step implementation of Toffoli gate for neutral atoms based on unconventional Rydberg pumping
- Neutral atom entanglement using adiabatic Rydberg dressing
- Adiabatic and high-fidelity quantum gates with hybrid Rydberg-Rydberg interactions
- High-fidelity Rydberg controlled-Z gates with optimal pulses
- Entangling quantum logic gates in neutral atoms via the microwave-driven spin-flip blockade
- Quantum gates with weak van der Waals interactions of neutral Rydberg atoms
- Effective spin-spin interactions in bilayers of Rydberg atoms and polar molecules
- Universal Barenco quantum gates via a tunable non-collinear interaction
- Hybrid Two-Qubit Gate using Circuit QED System with Triple-Leg Stripline Resonator
- Efficient Adiabatic Rapid Passage in the Presence of Noise
- Long-range gates via radio-frequency-induced Förster resonances
- Error-budgeting for a controlled-phase gate with strontium-88 Rydberg atoms
- Deterministic entanglement generation between a pair of atoms on different Rydberg states via chirped adiabatic passage
- Generation of quantum phases of matter and finding a maximum-weight independent set of unit-disk graphs using Rydberg atoms
- Time-Optimal Two- and Three-Qubit Gates for Rydberg Atoms
- Symmetric gate for ultracold neutral atoms based on counterdiabatic driving at Rydberg excitation