collaborators

18 papers

cond-mat.mes-hall2026

Controllable interaction between photons and distant spins via vacuum Rabi oscillations

Xiao Xue, Jurgen Dijkema, Tobias Bonsen +7

Vacuum Rabi oscillations between a single photon and a single spin demonstrate the capability of harnessing light-matter interaction at the level of a single quantum of energy. Sin…

cond-mat.mes-hall2026

Spin qubit operations by conveyor-mode shuttling

M. De Smet, Y. Matsumoto, D. Fernández-Fernández +8

Dynamic qubit routing is emerging as a promising architectural path for semiconductor quantum processors. Charge carriers can be rapidly moved around on a chip using traveling-wave…

quant-ph2026

Reconstructing Quantum Dot Charge Stability Diagrams with Diffusion Models

Vinicius Hernandes, Joseph Rogers, Rouven Koch +5

Efficiently characterizing quantum dot (QD) devices is a critical bottleneck when scaling quantum processors based on confined spins. Measuring high-resolution charge stability dia…

cond-mat.mes-hall2026

Coherence Protection for Mobile Spin Qubits in Silicon

Jan A. Krzywda, Yuta Matsumoto, Maxim De Smet +6

Mobile spin qubit architectures promise flexible connectivity for efficient quantum error correction and relaxed device layout constraints, but their viability rests on preserving…

cond-mat.mes-hall2026

Weight-four parity checks with silicon spin qubits

Brennan Undseth, Nicola Meggiato, Yi-Hsien Wu +7

Recent advances in coherent spin shuttling have made sparse semiconductor spin qubit arrays an appealing solid-state platform to realize quantum processors. The dynamic and long-ra…

cond-mat.mes-hall2026

Distributing entanglement between distant semiconductor qubit registers using a shared-control shuttling link

Zarije Ademi, Marion Bassi, Cécile X. Yu +8

Semiconductor quantum processors have potential to scale to modular quantum computers, in which qubit registers are coupled by quantum links, enabling high connectivity and space f…