activity
20192024
most citedLoading a quantum-dot based "Qubyte" register

120 citations · 306 across the 4 of their papers we have counts for

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Showing cond-mat.mes-hallShow all

5 papers · 1 filter

cond-mat.mes-hall2024★ 27 cited

High-fidelity single-spin shuttling in silicon

Maxim De Smet, Yuta Matsumoto, Anne-Marije J. Zwerver +12

The computational power and fault-tolerance of future large-scale quantum processors derive in large part from the connectivity between the qubits. One approach to increase connect…

cond-mat.mes-hall2022★ 81 cited

Reducing charge noise in quantum dots by using thin silicon quantum wells

B. Paquelet Wuetz, D. Degli Esposti, A. M. J. Zwerver +7

Charge noise in the host semiconductor degrades the performance of spin-qubits and poses an obstacle to control large quantum processors. However, it is challenging to engineer the…

cond-mat.mes-hall2021★ 78 cited

Atomic fluctuations lifting the energy degeneracy in Si/SiGe quantum dots

Brian Paquelet Wuetz, Merritt P. Losert, Sebastian Koelling +16

Electron spins in Si/SiGe quantum wells suffer from nearly degenerate conduction band valleys, which compete with the spin degree of freedom in the formation of qubits. Despite att…

cond-mat.mes-hall2020

On-chip Integration of Si/SiGe-based Quantum Dots and Switched-capacitor Circuits

Y. Xu, F. K. Unseld, A. Corna +9

Solid-state qubits integrated on semiconductor substrates currently require at least one wire from every qubit to the control electronics, leading to a so-called wiring bottleneck…

cond-mat.mes-hall2019★ 120 cited

Loading a quantum-dot based "Qubyte" register

C. Volk, A. M. J. Zwerver, U. Mukhopadhyay +8

Electrostatically defined quantum dot arrays offer a compelling platform for quantum computation and simulation. However, tuning up such arrays with existing techniques becomes imp…