45 citations · 150 across the 7 of their papers we have counts for
6 papers · 1 filter
Dynamical subset sampling of quantum error correcting protocols
Sascha Heußen, Don Winter, Manuel Rispler +1
Quantum error correcting (QEC) stabilizer codes enable protection of quantum information against errors during storage and processing. Simulation of noisy QEC codes is used to iden…
Computational Capabilities and Compiler Development for Neutral Atom Quantum Processors: Connecting Tool Developers and Hardware Experts
Ludwig Schmid, David F. Locher, Manuel Rispler +4
Neutral Atom Quantum Computing (NAQC) emerges as a promising hardware platform primarily due to its long coherence times and scalability. Additionally, NAQC offers computational ad…
Measurement-free fault-tolerant quantum error correction in near-term devices
Sascha Heußen, David F. Locher, Markus Müller
Logical qubits can be protected from decoherence by performing QEC cycles repeatedly. Algorithms for fault-tolerant QEC must be compiled to the specific hardware platform under con…
Fault-Tolerant Code Switching Protocols for Near-Term Quantum Processors
Friederike Butt, Sascha Heußen, Manuel Rispler +1
Topological color codes are widely acknowledged as promising candidates for fault-tolerant quantum computing. Neither a two-dimensional nor a three-dimensional topology, however, c…
Holographic imaging of an array of submicron light scatterers at low photon numbers
Sebastian Kölle, Manuel Jäger, Markus Müller +3
We experimentally test a recently proposed holographic method for imaging coherent light scatterers which are distributed over a 2-dimensional grid. In our setup the scatterers con…
Strategies for practical advantage of fault-tolerant circuit design in noisy trapped-ion quantum computers
Sascha Heußen, Lukas Postler, Manuel Rispler +5
Fault-tolerant quantum error correction provides a strategy to protect information processed by a quantum computer against noise which would otherwise corrupt the data. A fault-tol…