Single temporal-pulse-modulated parameterized controlled-phase gate for Rydberg atoms
arXiv:2201.05994 · doi:10.1103/PhysRevApplied.18.044042
Abstract
We propose an adiabatic protocol for implementing a controlled-phase gate CZ with continuous of neutral atoms through a symmetrical two-photon excitation process via the second resonance line, in Rb, with a single-temporal-modulation-coupling of the ground state and intermediate state. Relying on different adiabatic paths, the phase factor of CZ gate can be accumulated on the logic qubit state alone by calibrating the shape of the temporal pulse where strict zero amplitudes at the start and end of the pulse are not needed. For a wide range of , we can obtain the fidelity of CZ gate over in less than s, in the presence of spontaneous emission from intermediate and Rydberg states. And in particular for , we benchmark the performance of the CZ gate by taking into account various experimental imperfections, such as Doppler shifts, fluctuation of Rydberg-Rydberg interaction strength, inhomogeneous Rabi frequency, and noise of driving fields, etc, and show that the predicted fidelity is able to maintain at about after correcting the measurement error. This gate protocol provides a robustness against the fluctuation of pulse amplitude and a flexible way for adjusting the entangling phase, which may contribute to the experimental implementation of near-term noisy intermediate-scale quantum (NISQ) computation and algorithm with neutral-atom systems.
15 pages, 12 figures, accepted by Phys. Rev. Applied
References in corpus (53)
- Quantum Computing
- Logic gates at the surface code threshold: Superconducting qubits poised for fault-tolerant quantum computing
- Quantum information processing with superconducting circuits: a review
- High-fidelity quantum logic gates using trapped-ion hyperfine qubits
- High-fidelity two-qubit quantum logic gates using trapped calcium-43 ions
- Quantum computing with atomic qubits and Rydberg interactions: Progress and challenges
- Parallel implementation of high-fidelity multi-qubit gates with neutral atoms
- Demonstration of multi-qubit entanglement and algorithms on a programmable neutral atom quantum computer
- High-Fidelity Universal Gate Set for Be Ion Qubits
- Magneto-optical trapping of a diatomic molecule
- ARC: An open-source library for calculating properties of alkali Rydberg atoms
- High-Fidelity Entanglement and Detection of Alkaline-Earth Rydberg Atoms
- Rydberg mediated entanglement in a two-dimensional neutral atom qubit array
- Cooling a single atom in an optical tweezer to its quantum ground state
- Quantum gates and multi-particle entanglement by Rydberg excitation blockade and adiabatic passage
- A Rydberg blockade CNOT gate and entanglement in a 2D array of neutral atom qubits
- Analysis of imperfections in the coherent optical excitation of single atoms to Rydberg states
- Energy distribution and cooling of a single atom in an optical tweezer
- A fast, low-leakage, high-fidelity two-qubit gate for a programmable superconducting quantum computer
- Deterministic entanglement of two neutral atoms via Rydberg blockade
- High-fidelity Rydberg quantum gate via a two-atom dark state
- Robustness of high-fidelity Rydberg gates with single-site addressability
- High-fidelity Rydberg-blockade entangling gate using shaped, analytic pulses
- Symmetric Rydberg controlled-Z gates with adiabatic pulses
- Sub-microsecond entangling gate between trapped ions via Rydberg interaction
- Creation of a Bose-condensed gas of rubidium 87 by laser cooling
- Two-Atom Rydberg Blockade using Direct 6S to nP Excitation
- Improved success probability with greater circuit depth for the quantum approximate optimization algorithm
- High fidelity entanglement of neutral atoms via a Rydberg-mediated single-modulated-pulse controlled-PHASE gate
- Improving the Performance of Deep Quantum Optimization Algorithms with Continuous Gate Sets
- Robust Mølmer-Sørensen gate for neutral atoms using rapid adiabatic Rydberg dressing
- Deutsch, Toffoli, and CNOT Gates via Rydberg Blockade of Neutral Atoms
- Shortcuts to adiabatic passage for multiqubit controlled phase gate
- Unconventional Rydberg pumping and applications in quantum information processing
- Two-qubit gates using adiabatic passage of the Stark-tuned Förster resonances in Rydberg atoms
- Binding potentials and interaction gates between microwave-dressed Rydberg atoms
- Coherent and dissipative dynamics of entangled few-body systems of Rydberg atoms
- Comparison of Gaussian and super Gaussian laser beams for addressing atomic qubits
- 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
- Long-range quantum gate via Rydberg states of atoms in a thermal microwave cavity
- 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
- Doppler-resilient ground-Rydberg transition and its application in high-fidelity entangling gates with neutral atoms
- Suppress motional dephasing of ground-Rydberg transition for high-fidelity quantum control with neutral atoms
- Fast high-fidelity entangling gates for spin qubits in Si double quantum dots
- Annulled van der Waals interaction and fast Rydberg quantum gates
- Preparation of one Rb and one Cs atom in a single optical tweezer
- Coherent ground-state transport of neutral atoms
- One-step implementation of Toffoli gate for neutral atoms based on unconventional Rydberg pumping
- Optimization of Controlled-Z Gate with Data-Driven Gradient Ascent Pulse Engineering in a Superconducting Qubit System
- Single-tone pulse sequences and robust two-tone shaped pulses for three silicon spin qubits with always-on exchange
Cited by in corpus (9)
- High-fidelity interconversion between Greenberger-Horne-Zeilinger and states through Floquet-Lindblad engineering in Rydberg atom arrays
- High-fidelity Rydberg controlled-Z gates with optimal pulses
- High-fidelity and robust controlled-Z gates implemented with Rydberg atoms via echoing rapid adiabatic passage
- Simulation of a feedback-based algorithm for quantum optimization for a realistic neutral atom system with an optimized small-angle controlled-phase gate
- Holonomic swap and controlled-swap gates of neutral atoms via selective Rydberg pumping
- Fast nuclear-spin entangling gates compatible with large-scale atomic arrays
- Inertial geometric quantum logic gates
- Symmetric gate for ultracold neutral atoms based on counterdiabatic driving at Rydberg excitation
- Engineering the non-Hermitian Su-Schrieffer-Heeger model with skin effects in Rydberg atom arrays