5 pages, 3 figuresInternational audienceTwo-qubit interactions are at the heart of quantum information processing. For single-spin qubits in semiconductor quantum dots, the exchange gate has always been considered the natural two-qubit gate. The recent integration of magnetic field or g-factor gradients in coupled quantum dot systems allows for a one-step, robust realization of the controlled phase (C-Phase) gate instead. We analyze the C-Phase gate durations and fidelities that can be obtained under realistic conditions, including the effects of charge and nuclear field fluctuations, and find gate error probabilities of below 10-4, possibly allowing fault-tolerant quantum computation
Spin qubits in quantum dots define an attractive platform for quantum information because of their c...
The implementation of high fidelity two-qubit gates is a bottleneck in the progress toward universal...
Universal multiple-qubit gates can be implemented by a set of universal single-qubit gates and any o...
Two-qubit interactions are at the heart of quantum information processing. For single-spin qubits in...
Motivated by recent experiments of Zajac et al. [Science 359, 439 (2018)], we theoretically describe...
Singlet-triplet spin qubits in six-electron double quantum dots, in moderate magnetic fields, can sh...
We present a novel scheme for performing a conditional phase gate between two spin qubits in adjacen...
We present a novel scheme for performing a conditional phase gate between two spin qubits in adjacen...
A key ingredient for a quantum computer is the accurate manipulation of qubits in order to generate ...
A quantum computer utilizes the laws of quantum mechanics and performs logic operations on quantum t...
International audienceSingle-spin qubits in semiconductor quantum dots hold promise for universal qu...
A two-level quantum system is the building block of a quantum computer. This pair of quantum states ...
Recent achievements in the field of gate defined semiconductor quantum dots reinforce the concept of...
Recent achievements in the field of gate-defined semiconductor quantum dots reinforce the concept of...
The construction of a solid-state quantum computer remains a coveted, yet elusive goal. Among the mo...
Spin qubits in quantum dots define an attractive platform for quantum information because of their c...
The implementation of high fidelity two-qubit gates is a bottleneck in the progress toward universal...
Universal multiple-qubit gates can be implemented by a set of universal single-qubit gates and any o...
Two-qubit interactions are at the heart of quantum information processing. For single-spin qubits in...
Motivated by recent experiments of Zajac et al. [Science 359, 439 (2018)], we theoretically describe...
Singlet-triplet spin qubits in six-electron double quantum dots, in moderate magnetic fields, can sh...
We present a novel scheme for performing a conditional phase gate between two spin qubits in adjacen...
We present a novel scheme for performing a conditional phase gate between two spin qubits in adjacen...
A key ingredient for a quantum computer is the accurate manipulation of qubits in order to generate ...
A quantum computer utilizes the laws of quantum mechanics and performs logic operations on quantum t...
International audienceSingle-spin qubits in semiconductor quantum dots hold promise for universal qu...
A two-level quantum system is the building block of a quantum computer. This pair of quantum states ...
Recent achievements in the field of gate defined semiconductor quantum dots reinforce the concept of...
Recent achievements in the field of gate-defined semiconductor quantum dots reinforce the concept of...
The construction of a solid-state quantum computer remains a coveted, yet elusive goal. Among the mo...
Spin qubits in quantum dots define an attractive platform for quantum information because of their c...
The implementation of high fidelity two-qubit gates is a bottleneck in the progress toward universal...
Universal multiple-qubit gates can be implemented by a set of universal single-qubit gates and any o...