The quality of quantum bits (qubits) in silicon is highly vulnerable to charge noise that is omni-present in semiconductor devices and is in principle hard to be suppressed. For a realistically sized quantum dot system based on a silicon-germanium heterostructure whose confinement is manipulated with electrical biases imposed on top electrodes, we computationally explore the noise-robustness of 2-qubit entangling operations with a focus on the controlled-X (CNOT) logic that is essential for designs of gate-based universal quantum logic circuits. With device simulations based on the physics of bulk semiconductors augmented with electronic structure calculations, we not only quantify the degradation in fidelity of single-step CNOT operations ...
10 pages. -- Contents: Measurement of the thickness of the quantum wells. -- Charge noise measuremen...
Single spin quantum dot qubits in silicon are a promising candidate for a scalable quantum processor...
The scalability of the quantum processor technology is elemental in reaching fault-tolerant quantum ...
We characterize the quantum entanglement of the realistic two-qubit signals that are sensitive to ch...
Quantum computing has become a thriving field over the past several decades. Although many candidate...
The spin of an electron confined in semiconductor quantum dots is currently a promising candidate fo...
Quantum processors based on integrated nanoscale silicon spin qubits are a promising platform for hi...
Future quantum computers capable of solving relevant problems will require a large number of qubits ...
Gate-defined quantum dots have been identified as a promising platform for quantum information proce...
Silicon spin qubits are among the most promising candidates for large scale quantum computers, due t...
The understanding of quantum mechanics enabled the development of technology such as transistors and...
As mass-produced silicon transistors have reached the nano-scale, their behavior and performances ar...
Quantum computing could enable exponential speedups for certain classes of problems by exploiting su...
10 pages. -- Contents: Measurement of the thickness of the quantum wells. -- Charge noise measuremen...
10 pages. -- Contents: Measurement of the thickness of the quantum wells. -- Charge noise measuremen...
10 pages. -- Contents: Measurement of the thickness of the quantum wells. -- Charge noise measuremen...
Single spin quantum dot qubits in silicon are a promising candidate for a scalable quantum processor...
The scalability of the quantum processor technology is elemental in reaching fault-tolerant quantum ...
We characterize the quantum entanglement of the realistic two-qubit signals that are sensitive to ch...
Quantum computing has become a thriving field over the past several decades. Although many candidate...
The spin of an electron confined in semiconductor quantum dots is currently a promising candidate fo...
Quantum processors based on integrated nanoscale silicon spin qubits are a promising platform for hi...
Future quantum computers capable of solving relevant problems will require a large number of qubits ...
Gate-defined quantum dots have been identified as a promising platform for quantum information proce...
Silicon spin qubits are among the most promising candidates for large scale quantum computers, due t...
The understanding of quantum mechanics enabled the development of technology such as transistors and...
As mass-produced silicon transistors have reached the nano-scale, their behavior and performances ar...
Quantum computing could enable exponential speedups for certain classes of problems by exploiting su...
10 pages. -- Contents: Measurement of the thickness of the quantum wells. -- Charge noise measuremen...
10 pages. -- Contents: Measurement of the thickness of the quantum wells. -- Charge noise measuremen...
10 pages. -- Contents: Measurement of the thickness of the quantum wells. -- Charge noise measuremen...
Single spin quantum dot qubits in silicon are a promising candidate for a scalable quantum processor...
The scalability of the quantum processor technology is elemental in reaching fault-tolerant quantum ...