activity
20092026
most citedElectrically controlling single spin qubits in a continuous microwave field

153 citations · 985 across the 43 of their papers we have counts for

collaborators
Showing 2023Show all

11 papers · 1 filter

cond-mat.mes-hall2023★ 47 cited

Universal control of four singlet-triplet qubits

Xin Zhang, Elizaveta Morozova, Maximilian Rimbach-Russ +9

The coherent control of interacting spins in semiconductor quantum dots is of strong interest for quantum information processing as well as for studying quantum magnetism from the…

cond-mat.mes-hall2023★ 2 cited

Gate modulation of the hole singlet-triplet qubit frequency in germanium

John Rooney, Zhentao Luo, Lucas E. A. Stehouwer +3

Spin qubits in germanium gate-defined quantum dots have made considerable progress within the last few years, partially due to their strong spin-orbit coupling and site-dependent $…

cond-mat.mes-hall2023★ 14 cited

Single-electron occupation in quantum dot arrays at selectable plunger gate voltage

Marcel Meyer, Corentin Déprez, Ilja N. Meijer +6

The small footprint of semiconductor qubits is favourable for scalable quantum computing. However, their size also makes them sensitive to their local environment and variations in…

cond-mat.mes-hall2023★ 40 cited

Low disorder and high valley splitting in silicon

Davide Degli Esposti, Lucas E. A. Stehouwer, Önder Gül +13

The electrical characterisation of classical and quantum devices is a critical step in the development cycle of heterogeneous material stacks for semiconductor spin qubits. In the…

cond-mat.mes-hall2023★ 51 cited

Coherent spin qubit shuttling through germanium quantum dots

Floor van Riggelen-Doelman, Chien-An Wang, Sander L. de Snoo +7

Quantum links can interconnect qubit registers and are therefore essential in networked quantum computing. Semiconductor quantum dot qubits have seen significant progress in the hi…

cond-mat.mes-hall2023★ 19 cited

Bichromatic Rabi Control of Semiconductor Qubits

Valentin John, Francesco Borsoi, Zoltán György +9

Electrically driven spin resonance is a powerful technique for controlling semiconductor spin qubits. However, it faces challenges in qubit addressability and off-resonance driving…