Two-qubit logic and teleportation with mobile spin qubits in silicon

Y Y. Matsumoto M M. De Smet L L. Tryputen S S. L. de Snoo S S. V. Amitonov A A. Sammak M M. Rimbach-Russ G G. Scappucci L L. M. K. Vandersypen

Abstract

Abstract The scalability and power of quantum computing architectures depend critically on high-fidelity operations and robust and flexible qubit connectivity 1–3 . In this respect, mobile qubits are particularly attractive as they enable dynamic and reconfigurable qubit arrays. This approach allows quantum processors to adapt their connectivity patterns during operation, implement different quantum error correction codes on the same hardware and optimize resource use through dedicated functional zones for specific operations such as measurement or entanglement generation 4–7 . Such flexibility also relieves architectural constraints, as recently demonstrated in atomic systems based on trapped ions 4,5 and neutral atoms manipulated with optical tweezers 6,7 . In solid-state platforms, highly coherent shuttling of electron spins was recently reported 8,9 . A key outstanding question is whether it may be possible to perform quantum gates directly on the mobile spins. Here we demonstrate two-qubit operations between two electron spins carried towards each other in separate travelling potential minima in a semiconductor device. We find that the interaction strength is highly tunable by their spatial separation. When we shuttle the two spins towards the centre by 120 nm each for a total displacement of 240 nm, we achieve an average two-qubit gate fidelity of about 99%. Furthermore, we implement conditional post-selected quantum state teleportation between qubits separated by 320 nm with an average gate fidelity of 87%, showcasing the potential of mobile spin qubits for non-local quantum information processing. We expect that operations on mobile qubits will become a universal feature of future large-scale semiconductor quantum processors.

Article Details

Journal Nature
Volume / Issue Vol. 653, Issue 8114
Published May 14, 2026
Pages 391-397
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (9)

Y

Y. Matsumoto

M

M. De Smet

L

L. Tryputen

S

S. L. de Snoo

S

S. V. Amitonov

A

A. Sammak

M

M. Rimbach-Russ

G

G. Scappucci

L

L. M. K. Vandersypen