Semiconductor spin qubits
The spin degree of freedom of an electron or a nucleus is one of the most basic properties of
nature and functions as an excellent qubit, as it provides a natural two-level system that is …
nature and functions as an excellent qubit, as it provides a natural two-level system that is …
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 …
Quantum logic with spin qubits crossing the surface code threshold
High-fidelity control of quantum bits is paramount for the reliable execution of quantum
algorithms and for achieving fault tolerance—the ability to correct errors faster than they …
algorithms and for achieving fault tolerance—the ability to correct errors faster than they …
High-fidelity parallel entangling gates on a neutral-atom quantum computer
The ability to perform entangling quantum operations with low error rates in a scalable
fashion is a central element of useful quantum information processing. Neutral-atom arrays …
fashion is a central element of useful quantum information processing. Neutral-atom arrays …
A quantum processor based on coherent transport of entangled atom arrays
The ability to engineer parallel, programmable operations between desired qubits within a
quantum processor is key for building scalable quantum information systems,. In most state …
quantum processor is key for building scalable quantum information systems,. In most state …
Molecular spins for quantum computation
Spins in solids or in molecules possess discrete energy levels, and the associated quantum
states can be tuned and coherently manipulated by means of external electromagnetic …
states can be tuned and coherently manipulated by means of external electromagnetic …
Grand unification of quantum algorithms
Quantum algorithms offer significant speed-ups over their classical counterparts for a variety
of problems. The strongest arguments for this advantage are borne by algorithms for …
of problems. The strongest arguments for this advantage are borne by algorithms for …
A quantum-dot spin qubit with coherence limited by charge noise and fidelity higher than 99.9%
The isolation of qubits from noise sources, such as surrounding nuclear spins and spin–
electric susceptibility,,–, has enabled extensions of quantum coherence times in recent …
electric susceptibility,,–, has enabled extensions of quantum coherence times in recent …
A ten-qubit solid-state spin register with quantum memory up to one minute
Spins associated with single defects in solids provide promising qubits for quantum-
information processing and quantum networks. Recent experiments have demonstrated …
information processing and quantum networks. Recent experiments have demonstrated …
Precision tomography of a three-qubit donor quantum processor in silicon
Nuclear spins were among the first physical platforms to be considered for quantum
information processing,, because of their exceptional quantum coherence and atomic-scale …
information processing,, because of their exceptional quantum coherence and atomic-scale …