activity
20242026
most citedA 300 mm foundry silicon spin qubit unit cell exceeding 99% fidelity in all operations

46 citations · 70 across the 13 of their papers we have counts for

collaborators
Showing cond-mat.mes-hallShow all

10 papers · 1 filter

cond-mat.mes-hall2026

Machine Learning for Charge State Characterization of Isolated Double Quantum Dots

Hyma Vallabhapurapu, Marco Candido, Krishna Choudhary +7

Scaling semiconductor quantum dot arrays toward fault-tolerant quantum computing requires efficient tuneup of spin qubits, a process that depends on the analysis of charge stabilit…

cond-mat.mes-hall2026

SiMOS quantum-dot spin qubits enabled by extreme-ultraviolet lithography

Thomas Van Caekenberghe, Paul Steinacker, Bart Raes +31

The realization of large-scale silicon quantum processors requires spin qubits compatible with advanced semiconductor manufacturing technologies, demanding lithographic processes t…

cond-mat.mes-hall2026★ 1 cited

Gate Stack Engineering for High-Mobility and Low-Noise SiMOS Quantum Devices

Md. Mamunur Rahman, Ensar Vahapoglu, Kok Wai Chan +16

We systematically investigate the interplay between materials engineering, quantum transport, and low-frequency charge noise in silicon metal--oxide--semiconductor (SiMOS) quantum…

cond-mat.mes-hall2025

Coupling a Ge nuclear spin to an electrostatically defined quantum dot

Paul Steinacker, Gauri Goenka, Rocky Yue Su +17

Single nuclear spins in silicon are a promising resource for quantum technologies due to their long coherence times and excellent control fidelities. Qubits and qudits have been en…

cond-mat.mes-hall2025★ 3 cited

Interplay of Zeeman Splitting and Tunnel Coupling in Coherent Spin Qubit Shuttling

Ssu-Chih Lin, Paul Steinacker, MengKe Feng +11

Spin shuttling offers a promising approach for developing scalable silicon-based quantum processors by addressing the connectivity limitations of quantum dots. In this work, we dem…

cond-mat.mes-hall2025★ 1 cited

Enhancement of Electric Drive in Silicon Quantum Dots with Electric Quadrupole Spin Resonance

Philip Y. Mai, Pedro H. Pereira, Lucas Andrade Alonso +19

Quantum computation with electron spin qubits requires coherent and efficient manipulation of these spins, typically accomplished through the application of alternating magnetic or…