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 …
Semiconductor qubits in practice
In the past decade, semiconducting qubits have made great strides in overcoming
decoherence, improving the prospects for scalability and have become one of the leading …
decoherence, improving the prospects for scalability and have become one of the leading …
Universal control of a six-qubit quantum processor in silicon
Future quantum computers capable of solving relevant problems will require a large number
of qubits that can be operated reliably. However, the requirements of having a large qubit …
of qubits that can be operated reliably. However, the requirements of having a large qubit …
Optical observation of single spins in silicon
The global quantum internet will require long-lived, telecommunications-band photon–
matter interfaces manufactured at scale. Preliminary quantum networks based on photon …
matter interfaces manufactured at scale. Preliminary quantum networks based on photon …
Scaling silicon-based quantum computing using CMOS technology
As quantum processors grow in complexity, attention is moving to the scaling prospects of
the entire quantum computing system, including the classical support hardware. Recent …
the entire quantum computing system, including the classical support hardware. Recent …
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 programmable two-qubit quantum processor in silicon
Now that it is possible to achieve measurement and control fidelities for individual quantum
bits (qubits) above the threshold for fault tolerance, attention is moving towards the difficult …
bits (qubits) above the threshold for fault tolerance, attention is moving towards the difficult …
Resonantly driven CNOT gate for electron spins
Single-qubit rotations and two-qubit CNOT operations are crucial ingredients for universal
quantum computing. Although high-fidelity single-qubit operations have been achieved …
quantum computing. Although high-fidelity single-qubit operations have been achieved …
Review of performance metrics of spin qubits in gated semiconducting nanostructures
Abstract This Technical Review collects values of selected performance characteristics of
semiconductor spin qubits defined in electrically controlled nanostructures. The …
semiconductor spin qubits defined in electrically controlled nanostructures. The …
A hole spin qubit in a fin field-effect transistor above 4 kelvin
The greatest challenge in quantum computing is achieving scalability. Classical computing,
which previously faced such issues, currently relies on silicon chips hosting billions of fin …
which previously faced such issues, currently relies on silicon chips hosting billions of fin …