Material platforms for spin-based photonic quantum technologies
A central goal in quantum optics and quantum information science is the development of
quantum networks to generate entanglement between distributed quantum memories …
quantum networks to generate entanglement between distributed quantum memories …
Material platforms for defect qubits and single-photon emitters
Quantum technology has grown out of quantum information theory and now provides a
valuable tool that researchers from numerous fields can add to their toolbox of research …
valuable tool that researchers from numerous fields can add to their toolbox of research …
4H-silicon-carbide-on-insulator for integrated quantum and nonlinear photonics
Optical quantum information processing will require highly efficient photonic circuits to
connect quantum nodes on-chip and across long distances. This entails the efficient …
connect quantum nodes on-chip and across long distances. This entails the efficient …
Five-second coherence of a single spin with single-shot readout in silicon carbide
An outstanding hurdle for defect spin qubits in silicon carbide (SiC) is single-shot readout, a
deterministic measurement of the quantum state. Here, we demonstrate single-shot readout …
deterministic measurement of the quantum state. Here, we demonstrate single-shot readout …
Silicon carbide color centers for quantum applications
Silicon carbide has recently surged as an alternative material for scalable and integrated
quantum photonics, as it is a host for naturally occurring color centers within its bandgap …
quantum photonics, as it is a host for naturally occurring color centers within its bandgap …
Quantum information and algorithms for correlated quantum matter
Discoveries in quantum materials, which are characterized by the strongly quantum-
mechanical nature of electrons and atoms, have revealed exotic properties that arise from …
mechanical nature of electrons and atoms, have revealed exotic properties that arise from …
Electrical and optical control of single spins integrated in scalable semiconductor devices
Spin defects in silicon carbide have the advantage of exceptional electron spin coherence
combined with a near-infrared spin-photon interface, all in a material amenable to modern …
combined with a near-infrared spin-photon interface, all in a material amenable to modern …
Isolated electron spins in silicon carbide with millisecond coherence times
The elimination of defects from SiC has facilitated its move to the forefront of the
optoelectronics and power-electronics industries. Nonetheless, because certain SiC defects …
optoelectronics and power-electronics industries. Nonetheless, because certain SiC defects …
Entanglement and control of single nuclear spins in isotopically engineered silicon carbide
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 silicon …
spin qubits. In this work, we demonstrate control of isolated 29Si nuclear spins in silicon …
Room temperature coherent control of defect spin qubits in silicon carbide
Electronic spins in semiconductors have been used extensively to explore the limits of
external control over quantum mechanical phenomena. A long-standing goal of this …
external control over quantum mechanical phenomena. A long-standing goal of this …