Single-step implementation of high-fidelity -bit Toffoli gates SE Rasmussen, K Groenland, R Gerritsma, K Schoutens, NT Zinner Physical Review A 101 (2), 022308, 2020 | 63 | 2020 |
High-fidelity method for a single-step -bit Toffoli gate in trapped ions JD Arias Espinoza, K Groenland, M Mazzanti, K Schoutens, R Gerritsma Physical Review A 103 (5), 052437, 2021 | 14 | 2021 |
Many-body strategies for multiqubit gates: quantum control through Krawtchouk-chain dynamics K Groenland, K Schoutens Physical Review A 97 (4), 042321, 2018 | 14 | 2018 |
Signal processing techniques for efficient compilation of controlled rotations in trapped ions K Groenland, F Witteveen, K Schoutens, R Gerritsma New Journal of Physics 22 (6), 063006, 2020 | 11 | 2020 |
Quantum gates by resonantly driving many-body eigenstates, with a focus on Polychronakos’ model K Groenland, K Schoutens Journal of Statistical Mechanics: Theory and Experiment 2019 (7), 073103, 2019 | 6 | 2019 |
Adiabatic state distribution using anti-ferromagnetic spin systems K Groenland SciPost Physics 6 (1), 011, 2019 | 3 | 2019 |
Sequences of molmer-sorensen gates can implement controlled rotations using quantum signal processing techniques K Groenland, F Witteveen, K Schoutens, R Gerritsma arXiv preprint arXiv:2001.05231, 2020 | 2 | 2020 |
Quantum protocols for few-qubit devices K Groenland University of Amsterdam, 2019 | 2 | 2019 |
Stimulated Raman adiabatic passage-like protocols for amplitude transfer generalize to many bipartite graphs K Groenland, C Groenland, R Kramer Journal of Mathematical Physics 61 (7), 2020 | 1 | 2020 |
Efficient forward propagation of time-sequences in convolutional neural networks using deep shifting K Groenland, S Bohte arXiv preprint arXiv:1603.03657, 2016 | 1 | 2016 |
Adiabatic transfer of amplitude using STIRAP-like protocols generalizes to many bipartite graphs K Groenland, C Groenland, R Kramer arXiv, arXiv: 1904.09915, 2019 | | 2019 |
Universele Topologische Kwantumcomputers met Majoranafermionen in 1D-Draden K Groenland | | |