65 citations · 81 across the 9 of their papers we have counts for
5 papers · 1 filter
Engineering local strain for single-atom nuclear acoustic resonance in silicon
Laura A. O'Neill, Benjamin Joecker, Andrew D. Baczewski +1
Mechanical strain plays a key role in the physics and operation of nanoscale semiconductor systems, including quantum dots and single-dopant devices. Here we describe the design of…
Full configuration interaction simulations of exchange-coupled donors in silicon using multi-valley effective mass theory
Benjamin Joecker, Andrew D. Baczewski, John K. Gamble +3
Donor spin in silicon have achieved record values of coherence times and single-qubit gate fidelities. The next stage of development involves demonstrating high-fidelity two-qubit…
Coherent electrical control of a single high-spin nucleus in silicon
Serwan Asaad, Vincent Mourik, Benjamin Joecker +12
Nuclear spins are highly coherent quantum objects. In large ensembles, their control and detection via magnetic resonance is widely exploited, e.g. in chemistry, medicine, material…
Weak anti-localization of two-dimensional holes in germanium beyond the diffusive regime
Chung-Tao Chou, Noah Tobias Jacobson, Jonathan Edward Moussa +5
Gate-controllable spin-orbit coupling is often one requisite for spintronic devices. For practical spin field-effect transistors, another essential requirement is ballistic spin tr…
All-electrical universal control of a double quantum dot qubit in silicon MOS
Patrick Harvey-Collard, Ryan M. Jock, N. Tobias Jacobson +12
Qubits based on transistor-like Si MOS nanodevices are promising for quantum computing. In this work, we demonstrate a double quantum dot spin qubit that is all-electrically contro…