Solid-state spin qubits is a promising platform for quantum computation and quantum networks1,2. Recent experiments have demonstrated high-quality control over multi-qubit systems3–8, elementary quantum algorithms8–11 and non-fault-tolerant error correction12–14. Large-scale systems will require using error-corrected logical qubits that are operated fault tolerantly, so that reliable computation becomes possible despite noisy operations15–18. Overcoming imperfections in this way remains an important outstanding challenge for quantum science15,19–27. Here, we demonstrate fault-tolerant operations on a logical qubit using spin qubits in diamond. Our approach is based on the five-qubit code with a recently discovered flag protocol that enables...
The construction of a quantum computer remains a fundamental scientific and technological challenge,...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
The storage and processing of quantum information are susceptible to external noise, resulting in co...
Solid-state spin qubits is a promising platform for quantum computation and quantum networks1,2. Rec...
Solid-state spin qubits are a promising platform for quantum computation and quantum networks. Recen...
Reliable quantum information processing in the face of errors is a major fundamental and technologic...
Digital information based on the laws of quantum mechanics promisses powerful new ways of computatio...
It is not so well known that measurement-free quantum error correction protocols can be designed to ...
Quantum error correction requires the detection of errors via reliable measurements of multiqubit co...
Quantumcomputation is the modern version of Schrödinger’s cat experiment. It is backed up in princip...
We present a general approach for the Fault Tolerant implementation of stabilizer codes with a logic...
Quantum computing is a field that shows tremendous possibilities and promise. It can provide an expo...
Quantum computers can be protected from noise by encoding the logical quantum information redundantl...
At its most fundamental level, circuit-based quantum computation relies on the application of contro...
Quantum computing has enormous potential, but this can only be realised if quantum errors can be con...
The construction of a quantum computer remains a fundamental scientific and technological challenge,...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
The storage and processing of quantum information are susceptible to external noise, resulting in co...
Solid-state spin qubits is a promising platform for quantum computation and quantum networks1,2. Rec...
Solid-state spin qubits are a promising platform for quantum computation and quantum networks. Recen...
Reliable quantum information processing in the face of errors is a major fundamental and technologic...
Digital information based on the laws of quantum mechanics promisses powerful new ways of computatio...
It is not so well known that measurement-free quantum error correction protocols can be designed to ...
Quantum error correction requires the detection of errors via reliable measurements of multiqubit co...
Quantumcomputation is the modern version of Schrödinger’s cat experiment. It is backed up in princip...
We present a general approach for the Fault Tolerant implementation of stabilizer codes with a logic...
Quantum computing is a field that shows tremendous possibilities and promise. It can provide an expo...
Quantum computers can be protected from noise by encoding the logical quantum information redundantl...
At its most fundamental level, circuit-based quantum computation relies on the application of contro...
Quantum computing has enormous potential, but this can only be realised if quantum errors can be con...
The construction of a quantum computer remains a fundamental scientific and technological challenge,...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
The storage and processing of quantum information are susceptible to external noise, resulting in co...