activity
20182020
collaborators

6 papers

quant-ph2020

Accurately computing electronic properties of a quantum ring

C. Neill, T. McCourt, X. Mi +89

A promising approach to study condensed-matter systems is to simulate them on an engineered quantum platform. However, achieving the accuracy needed to outperform classical methods…

quant-ph2020

Demonstrating a Continuous Set of Two-qubit Gates for Near-term Quantum Algorithms

B. Foxen, C. Neill, A. Dunsworth +54

Quantum algorithms offer a dramatic speedup for computational problems in machine learning, material science, and chemistry. However, any near-term realizations of these algorithms…

cond-mat.dis-nn2019

Direct measurement of non-local interactions in the many-body localized phase

B. Chiaro, C. Neill, A. Bohrdt +58

The interplay of interactions and strong disorder can lead to an exotic quantum many-body localized (MBL) phase. Beyond the absence of transport, the MBL phase has distinctive sign…

quant-ph2019

Diabatic gates for frequency-tunable superconducting qubits

R. Barends, C. M. Quintana, A. G. Petukhov +43

We demonstrate diabatic two-qubit gates with Pauli error rates down to in as fast as 18 ns using frequency-tunable superconducting qubits. This is achieved by…

quant-ph2018

Fluctuations of Energy-Relaxation Times in Superconducting Qubits

P. V. Klimov, J. Kelly, Z. Chen +30

Superconducting qubits are an attractive platform for quantum computing since they have demonstrated high-fidelity quantum gates and extensibility to modest system sizes. Nonethele…

quant-ph2018

High speed flux sampling for tunable superconducting qubits with an embedded cryogenic transducer

B. Foxen, J. Y. Mutus, E. Lucero +26

We develop a high speed on-chip flux measurement using a capacitively shunted SQUID as an embedded cryogenic transducer and apply this technique to the qualification of a near-term…