most citedHigh-fidelity two-qubit gates in silicon above one Kelvin

10 citations · 10 across the 1 of their papers we have counts for

collaborators

7 papers

cond-mat.mes-hall202010 cited

High-fidelity two-qubit gates in silicon above one Kelvin

L. Petit, M. Russ, H. G. J. Eenink +4

Spin qubits in quantum dots define an attractive platform for scalable quantum information because of their compatibility with semiconductor manufacturing, their long coherence tim…

cond-mat.mes-hall2020

Spin relaxation benchmarks and individual qubit addressability for holes in quantum dots

W. I. L. Lawrie, N. W. Hendrickx, F. van Riggelen +5

We investigate hole spin relaxation in the single- and multi-hole regime in a 2x2 germanium quantum dot array. We use radiofrequency (rf) charge sensing and observe Pauli Spin-Bloc…

cond-mat.mes-hall2019

A single-hole spin qubit

N. W. Hendrickx, W. I. L. Lawrie, L. Petit +3

Qubits based on quantum dots have excellent prospects for scalable quantum technology due to their inherent compatibility with standard semiconductor manufacturing. While early on…

cond-mat.mes-hall2019

Universal quantum logic in hot silicon qubits

L. Petit, H. G. J. Eenink, M. Russ +5

Quantum computation requires many qubits that can be coherently controlled and coupled to each other. Qubits that are defined using lithographic techniques are often argued to be p…

cond-mat.mes-hall2019

Quantum Dot Arrays in Silicon and Germanium

W. I. L. Lawrie, H. G. J. Eenink, N. W. Hendrickx +15

Electrons and holes confined in quantum dots define an excellent building block for quantum emergence, simulation, and computation. In order for quantum electronics to become pract…

cond-mat.mes-hall2019

Tunable coupling and isolation of single electrons in silicon metal-oxide-semiconductor quantum dots

H. G. J. Eenink, L. Petit, W. I. L. Lawrie +3

Extremely long coherence times, excellent single-qubit gate fidelities and two-qubit logic have been demonstrated with silicon metal-oxide-semiconductor spin qubits, making it one…