123 citations · 123 across the 1 of their papers we have counts for
7 papers
Accurately computing electronic properties of a quantum ring
C. Neill, T. McCourt, X. Mi +89
A promising approach to study condensed-matter systems is to simulate them on an engineered quantum platform. However, achieving the accuracy needed to outperform classical methods…
Probing the coherence of solid-state qubits at avoided crossings
Mykyta Onizhuk, Kevin C. Miao, Joseph P. Blanton +5
Optically addressable paramagnetic defects in wide-band-gap semiconductors are promising platforms for quantum communications and sensing. The presence of avoided crossings between…
Entanglement and control of single quantum memories in isotopically engineered silicon carbide
Alexandre Bourassa, Christopher P. Anderson, Kevin C. Miao +9
Nuclear spins in the solid state are both a cause of decoherence and a valuable resource for spin qubits. In this work, we demonstrate control of isolated 29Si nuclear spins in sil…
Universal coherence protection in a solid-state spin qubit
Kevin C. Miao, Joseph P. Blanton, Christopher P. Anderson +6
Decoherence largely limits the physical realization of qubits and its mitigation is critical to quantum science. Here, we construct a robust qubit embedded in a decoherence-protect…
Purcell enhancement of a single silicon carbide color center with coherent spin control
A. L. Crook, C. P. Anderson, K. C. Miao +9
Silicon carbide has recently been developed as a platform for optically addressable spin defects. In particular, the neutral divacancy in the 4H polytype displays an optically addr…
Electrical and optical control of single spins integrated in scalable semiconductor devices
Christopher P. Anderson, Alexandre Bourassa, Kevin C. Miao +8
Spin defects in silicon carbide have exceptional electron spin coherence with a near-infrared spin-photon interface in a material amenable to modern semiconductor fabrication. Leve…