most citedBenchmarking Coherent Errors in Controlled-Phase Gates due to Spectator Qubits

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quant-ph2020

Demonstration of an All-Microwave Controlled-Phase Gate between Far Detuned Qubits

S. Krinner, P. Kurpiers, B. Royer +6

A challenge in building large-scale superconducting quantum processors is to find the right balance between coherence, qubit addressability, qubit-qubit coupling strength, circuit…

quant-ph2020

Implementation of Conditional-Phase Gates based on tunable ZZ-Interactions

Michele C. Collodo, Johannes Herrmann, Nathan Lacroix +7

High fidelity two-qubit gates exhibiting low crosstalk are essential building blocks for gate-based quantum information processing. In superconducting circuits two-qubit gates are…

quant-ph202073 cited

Benchmarking Coherent Errors in Controlled-Phase Gates due to Spectator Qubits

S. Krinner, S. Lazar, A. Remm +7

A major challenge in operating multi-qubit quantum processors is to mitigate multi-qubit coherent errors. For superconducting circuits, besides crosstalk originating from imperfect…

quant-ph2020

Improving the Performance of Deep Quantum Optimization Algorithms with Continuous Gate Sets

Nathan Lacroix, Christoph Hellings, Christian Kraglund Andersen +9

Variational quantum algorithms are believed to be promising for solving computationally hard problems and are often comprised of repeated layers of quantum gates. An example thereo…

quant-ph201934 cited

Parity Detection of Propagating Microwave Fields

Jean-Claude Besse, Simone Gasparinetti, Michele C. Collodo +5

The parity of the number of elementary excitations present in a quantum system provides important insights into its physical properties. Parity measurements are used, for example,…

quant-ph2019

Repeated Quantum Error Detection in a Surface Code

Christian Kraglund Andersen, Ants Remm, Stefania Lazar +6

The realization of quantum error correction is an essential ingredient for reaching the full potential of fault-tolerant universal quantum computation. Using a range of different s…