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 count and operating with high-fidelity are typically conflicting. Spins in semiconductor quantum dots show long-term promise but demonstrations so far use between one and four qubits and typically optimize the fidelity of either single- or two-qubit operations, or initialization and readout. Here we increase the number of qubits and simultaneously achieve respectable fidelities for universal operation, state preparation and measurement. We design, fabricate and operate a six-qubit processor with a focus on careful Hamiltonian engineering, on a high level of abstr...
Semiconductor based quantum information processing is a promising platform for real-izing the quantu...
Quantum computing could enable exponential speedups for certain classes of problems by exploiting su...
Quantum computers are promising to solve tasks that seem unsolvable with state-of-the-art computers....
Future quantum computers capable of solving relevant problems will require a large number of qubits ...
Future quantum computers capable of solving relevant problems will require a large number of qubits ...
Future quantum computers capable of solving relevant problems will require a large number of qubits ...
Quantum computers have gained widespread interest as they can potentially solve problems that are in...
Execution of quantum algorithms requires a quantum computer architecture with a dedicated quantum in...
Now that it is possible to achieve measurement and control fidelities for individual quantum bits (q...
Now that it is possible to achieve measurement and control fidelities for individual quantum bits (q...
Over the past few years, the field of quantum information science has seen tremendous progress towar...
A computer with quantum mechanical building blocks, or qubits, promises a new class of computational...
A measurement-based quantum feedback protocol is developed for spin state initialization in a gate-d...
Even the quantum simulation of an apparently simple molecule such as Fe2S2 requires a considerable n...
Even the quantum simulation of an apparently simple molecule such as Fe2S2 requires a considerable n...
Semiconductor based quantum information processing is a promising platform for real-izing the quantu...
Quantum computing could enable exponential speedups for certain classes of problems by exploiting su...
Quantum computers are promising to solve tasks that seem unsolvable with state-of-the-art computers....
Future quantum computers capable of solving relevant problems will require a large number of qubits ...
Future quantum computers capable of solving relevant problems will require a large number of qubits ...
Future quantum computers capable of solving relevant problems will require a large number of qubits ...
Quantum computers have gained widespread interest as they can potentially solve problems that are in...
Execution of quantum algorithms requires a quantum computer architecture with a dedicated quantum in...
Now that it is possible to achieve measurement and control fidelities for individual quantum bits (q...
Now that it is possible to achieve measurement and control fidelities for individual quantum bits (q...
Over the past few years, the field of quantum information science has seen tremendous progress towar...
A computer with quantum mechanical building blocks, or qubits, promises a new class of computational...
A measurement-based quantum feedback protocol is developed for spin state initialization in a gate-d...
Even the quantum simulation of an apparently simple molecule such as Fe2S2 requires a considerable n...
Even the quantum simulation of an apparently simple molecule such as Fe2S2 requires a considerable n...
Semiconductor based quantum information processing is a promising platform for real-izing the quantu...
Quantum computing could enable exponential speedups for certain classes of problems by exploiting su...
Quantum computers are promising to solve tasks that seem unsolvable with state-of-the-art computers....