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Learning quantum systems
The future development of quantum technologies relies on creating and manipulating
quantum systems of increasing complexity, with key applications in computation, simulation …
quantum systems of increasing complexity, with key applications in computation, simulation …
Quantum guidelines for solid-state spin defects
Defects with associated electron and nuclear spins in solid-state materials have a long
history relevant to quantum information science that goes back to the first spin echo …
history relevant to quantum information science that goes back to the first spin echo …
Sensitivity optimization for NV-diamond magnetometry
Solid-state spin systems including nitrogen-vacancy (NV) centers in diamond constitute an
increasingly favored quantum sensing platform. However, present NV ensemble devices …
increasingly favored quantum sensing platform. However, present NV ensemble devices …
[HTML][HTML] Photonic quantum metrology
Quantum metrology is one of the most promising applications of quantum technologies. The
aim of this research field is the estimation of unknown parameters exploiting quantum …
aim of this research field is the estimation of unknown parameters exploiting quantum …
Quantum sensing
“Quantum sensing” describes the use of a quantum system, quantum properties, or quantum
phenomena to perform a measurement of a physical quantity. Historical examples of …
phenomena to perform a measurement of a physical quantity. Historical examples of …
Elucidating reaction mechanisms on quantum computers
With rapid recent advances in quantum technology, we are close to the threshold of
quantum devices whose computational powers can exceed those of classical …
quantum devices whose computational powers can exceed those of classical …
Submillihertz magnetic spectroscopy performed with a nanoscale quantum sensor
Precise timekee** is critical to metrology, forming the basis by which standards of time,
length, and fundamental constants are determined. Stable clocks are particularly valuable in …
length, and fundamental constants are determined. Stable clocks are particularly valuable in …
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 …
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 …
Exploring quantum sensing potential for systems applications
The current rise of quantum technology is compelled by quantum sensing research.
Thousands of research labs are develo** and testing a broad range of sensor prototypes …
Thousands of research labs are develo** and testing a broad range of sensor prototypes …