We present a robust protocol for implementing high-fidelity multiqubit controlled phase gates (CkZ) on neutral atom qubits coupled to highly excited Rydberg states. Our approach is based on extending adiabatic rapid passage to two-photon excitation via a short-lived intermediate excited state common to alkali-atom Rydberg experiments, accounting for the full impact of spontaneous decay and differential AC Stark shifts from the complete manifold of hyperfine excited states. We evaluate and optimise gate performance, concluding that for Cs and currently available laser frequencies and powers, a CCZ gate with fidelity F > 0.995 for three qubits and CCCZ with F > 0.99 for four qubits is attainable in ∼ 1.8 μs via this protocol. Higher fidelitie...
We present schemes for geometric phase compensation in an adiabatic passage which can be used for th...
Individual neutral atoms excited to Rydberg states are a promising platform for quantum simulation a...
We investigate the robustness of two-qubit gates to deviations of experimental controls on a neutral...
We present a robust protocol for implementing high-fidelity multiqubit controlled phase gates (CkZ) ...
We present a robust protocol for implementing high-fidelity multiqubit controlled phase gates (CkZ) ...
We present a robust protocol for implementing high-fidelity multiqubit controlled phase gates $(C^kZ...
© 2019 American Physical Society. We report the implementation of universal two- A nd three-qubit en...
We propose an adiabatic protocol for implementing a controlled-phase gate CZθ with continuous θ of n...
We revisit the implementation of a two-qubit entangling gate, the M{\o}lmer-S{\o}rensen gate, using ...
We propose schemes of controlled-Z and controlled-not gates with ultracold neutral atoms based on de...
One can implement fast two-qubit entangling gates by exploiting the Rydberg blockade. Although vario...
One can implement fast two-qubit entangling gates by exploiting the Rydberg blockade. Although vario...
Individual neutral atoms excited to Rydberg states are a promising platform for quantum simulation a...
We propose an adiabatic protocol for implementing a controlled-phase gate CZθ with continuous θ of n...
Arrays of identical neutral atoms trapped in optical tweezers are a promising candidate for use in q...
We present schemes for geometric phase compensation in an adiabatic passage which can be used for th...
Individual neutral atoms excited to Rydberg states are a promising platform for quantum simulation a...
We investigate the robustness of two-qubit gates to deviations of experimental controls on a neutral...
We present a robust protocol for implementing high-fidelity multiqubit controlled phase gates (CkZ) ...
We present a robust protocol for implementing high-fidelity multiqubit controlled phase gates (CkZ) ...
We present a robust protocol for implementing high-fidelity multiqubit controlled phase gates $(C^kZ...
© 2019 American Physical Society. We report the implementation of universal two- A nd three-qubit en...
We propose an adiabatic protocol for implementing a controlled-phase gate CZθ with continuous θ of n...
We revisit the implementation of a two-qubit entangling gate, the M{\o}lmer-S{\o}rensen gate, using ...
We propose schemes of controlled-Z and controlled-not gates with ultracold neutral atoms based on de...
One can implement fast two-qubit entangling gates by exploiting the Rydberg blockade. Although vario...
One can implement fast two-qubit entangling gates by exploiting the Rydberg blockade. Although vario...
Individual neutral atoms excited to Rydberg states are a promising platform for quantum simulation a...
We propose an adiabatic protocol for implementing a controlled-phase gate CZθ with continuous θ of n...
Arrays of identical neutral atoms trapped in optical tweezers are a promising candidate for use in q...
We present schemes for geometric phase compensation in an adiabatic passage which can be used for th...
Individual neutral atoms excited to Rydberg states are a promising platform for quantum simulation a...
We investigate the robustness of two-qubit gates to deviations of experimental controls on a neutral...