43 citations · 62 across the 2 of their papers we have counts for
6 papers · 1 filter
Filter Function Formalism and Software Package to Compute Quantum Processes of Gate Sequences for Classical Non-Markovian Noise
Tobias Hangleiter, Pascal Cerfontaine, Hendrik Bluhm
Correlated, non-Markovian noise is present in many solid-state systems employed as hosts for quantum information technologies, significantly complicating the realistic theoretical…
Filter Functions for Quantum Processes under Correlated Noise
Pascal Cerfontaine, Tobias Hangleiter, Hendrik Bluhm
Many qubit implementations are afflicted by correlated noise not captured by standard theoretical tools that are based on Markov approximations. While independent gate operations a…
Towards a realistic GaAs-spin qubit device for a classical error-corrected quantum memory
Manuel Rispler, Pascal Cerfontaine, Veit Langrock +1
Based on numerically-optimized real-device gates and parameters we study the performance of the phase-flip (repetition) code on a linear array of Gallium Arsenide (GaAs) quantum do…
Self-Consistent Calibration of Quantum Gate Sets
Pascal Cerfontaine, René Otten, Hendrik Bluhm
The precise and automated calibration of quantum gates is a key requirement for building a reliable quantum computer. Unlike errors from decoherence, systematic errors can in princ…
High-fidelity gate set for exchange-coupled singlet-triplet qubits
Pascal Cerfontaine, René Otten, M. A. Wolfe +2
In order to enable semiconductor-based quantum computing with many qubits, issues like residual interqubit coupling and constraints from scalable control hardware need to be tackle…
Transfer of a quantum state from a photonic qubit to a gate-defined quantum dot
Benjamin Joecker, Pascal Cerfontaine, Federica Haupt +3
Interconnecting well-functioning, scalable stationary qubits and photonic qubits could substantially advance quantum communication applications and serve to link future quantum pro…