activity
20242026
collaborators

5 papers

cond-mat.mes-hall2026

Electrical driving of hole spin states in planar silicon MOS device by g-matrix modulation

Aaquib Shamim, Scott D. Liles, Joe Hillier +10

Hole spins in group IV quantum dots are a highly promising way to develop CMOS compatible spin qubits owing to their inherent spin-orbit coupling, which enables fast, coherent, and…

cond-mat.mes-hall2025

Anisotropic spin-blockade leakage current in a Ge hole double quantum dot

Zhanning Wang, S. D. Liles, Joe Hillier +2

Group IV quantum dot hole spin systems, exhibiting strong spin-orbit coupling, provide platforms for various qubit architectures. The rapid advancement of solid-state technologies…

cond-mat.mes-hall2025

Precision high-speed quantum logic with holes on a natural silicon foundry platform

Isaac Vorreiter, Jonathan Y. Huang, Scott D. Liles +15

Silicon spin qubits in gate-defined quantum dots leverage established semiconductor infrastructure and offer a scalable path toward transformative quantum technologies. Holes spins…

cond-mat.mes-hall2025

Holes in silicon are heavier than expected: transport properties of extremely high mobility electrons and holes in silicon MOSFETs

J. P. Wendoloski, J. Hillier, S. D. Liles +17

The quality of the silicon-oxide interface plays a crucial role in fabricating reproducible silicon spin qubits. In this work we characterize interface quality by performing mobili…

cond-mat.mes-hall2024

Probing g-tensor reproducibility and spin-orbit effects in planar silicon hole quantum dots

Ik Kyeong Jin, Joseph Hillier, Scott D. Liles +9

In this work, we probe the sensitivity of hole-spin properties to hole occupation number in a planar silicon double-quantum dot device fabricated on a 300 mm integrated platform. U…