Classical-Quantum Noise Mitigation for NISQ Hardware
arXiv:2105.08701
Abstract
In this work, the global white-noise model is proved from first principles. The adherence of NISQ hardware to the global white-noise model is used to perform noise mitigation using Classical White-noise Extrapolation (CLAWE).
11 pages, 16 figures
References in corpus (11)
- Complete universal quantum gate set approaching fault-tolerant thresholds with superconducting qubits
- Process verification of two-qubit quantum gates by randomized benchmarking
- Time-step targetting methods for real-time dynamics using DMRG
- Microwave-induced coupling of superconducting qubits
- Operation and intrinsic error budget of a two-qubit cross-resonance gate
- Entanglement of superconducting qubits via microwave fields: classical and quantum regimes
- Benchmarking the noise sensitivity of different parametric two-qubit gates in a single superconducting quantum computing platform
- Optimal control for fast and high-fidelity quantum gates in coupled superconducting flux qubits
- Generation of entanglement in systems of intercoupled qubits
- Alibaba Cloud Quantum Development Platform: Surface Code Simulations with Crosstalk
- Supercomputer simulations of transmon quantum computers