The fault-tolerant operation of logical qubits is an important requirement for realizing a universal quantum computer. Spin qubits based on quantum dots have great potential to be scaled to large numbers because of their compatibility with standard semiconductor manufacturing. Here, we show that a quantum error correction code can be implemented using a four-qubit array in germanium. We demonstrate a resonant SWAP gate and by combining controlled-Z and controlled-S−1 gates we construct a Toffoli-like three-qubit gate. We execute a two-qubit phase flip code and find that we can preserve the state of the data qubit by applying a refocusing pulse to the ancilla qubit. In addition, we implement a phase flip code on three qubits, making use of a...
We propose a scalable fault-tolerant scheme for deterministic quantum computing with spins that is b...
Quantum information processing in semiconductor quantum dots using single and multi-spin qubitsThe i...
We propose a scalable fault-tolerant scheme for deterministic quantum computing with spins that is b...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
Large-scale quantum computers rely on quantum error correction to protect the fragile quantum inform...
High-fidelity control of quantum bits is paramount for the reliable execution of quantum algorithms ...
High-fidelity control of quantum bits is paramount for the reliable execution of quantum algorithms ...
We design a logical qubit consisting of a linear array of quantum dots, we analyze error correction ...
Quantum error correcting codes have been developed to protect a quantum computer from decoherence du...
Fault-tolerant quantum computers that can solve hard problems rely on quantum error correction1. One...
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 scalable architecture for quantum computing requires logical units supporting quantum-error correc...
Recent advances in quantum error correction codes for fault-Tolerant quantum computing and physical ...
We propose a scalable fault-tolerant scheme for deterministic quantum computing with spins that is b...
Quantum information processing in semiconductor quantum dots using single and multi-spin qubitsThe i...
We propose a scalable fault-tolerant scheme for deterministic quantum computing with spins that is b...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
Large-scale quantum computers rely on quantum error correction to protect the fragile quantum inform...
High-fidelity control of quantum bits is paramount for the reliable execution of quantum algorithms ...
High-fidelity control of quantum bits is paramount for the reliable execution of quantum algorithms ...
We design a logical qubit consisting of a linear array of quantum dots, we analyze error correction ...
Quantum error correcting codes have been developed to protect a quantum computer from decoherence du...
Fault-tolerant quantum computers that can solve hard problems rely on quantum error correction1. One...
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 scalable architecture for quantum computing requires logical units supporting quantum-error correc...
Recent advances in quantum error correction codes for fault-Tolerant quantum computing and physical ...
We propose a scalable fault-tolerant scheme for deterministic quantum computing with spins that is b...
Quantum information processing in semiconductor quantum dots using single and multi-spin qubitsThe i...
We propose a scalable fault-tolerant scheme for deterministic quantum computing with spins that is b...