QuFEM: Fast and Accurate Quantum Readout Calibration Using the Finite Element Method
Siwei Tan, Liqiang Lu, Hanyu Zhang, Jia Yu, Congliang Lang, Yongheng Shang, Xinkui Zhao, Mingshuai Chen, Yun Liang, Jianwei Yin
Abstract
Quantum readout noise turns out to be the most significant source of error, which greatly affects the measurement fidelity. Matrix-based calibration has been demonstrated to be effective in various quantum platforms. However, existing methodologies are fundamentally limited in either scalability or accuracy. Inspired by the classical finite element method (FEM), a formal method to model the complex interaction between elements, we present our calibration framework named QuFEM. First, we apply a divide-and-conquer strategy that formulates the calibration as a series of tensor products with noise matrices. This matrices are iteratively characterized together with the calibrated probability distribution, aiming to capture the inherent locality of qubit interactions. Then, to accelerate the end-to-end calibration, we propose a sparse tensor-product engine to exploit the sparsity in the intermediate values. Our experiments show that QuFEM achieves 2.5×103× speedup in the 136-qubit calibration compared to the state-of-the-art matrix-based calibration technique [50], and provides 1.2× and 1.4× fidelity improvement on the 18-qubit and 36-qubit real-world quantum devices.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Cited by top-tier papers1
Ask how each one uses itRelated papers
- SpREM: Exploiting Hamming Sparsity for Fast Quantum Readout Error MitigationHanyu Zhang, Liqiang Lu, Siwei Tan, Size Zheng et al.DAC 2024 · 2 citations
- DyREM: Dynamically Mitigating Quantum Readout Error with Embedded AcceleratorKaiwen Zhou, Liqiang Lu, Hanyu Zhang, Debin Xiang et al.DAC 2025
- Mitigating Coupling Map Constrained Correlated Measurement Errors on Quantum DevicesAlan Robertson, Shuaiwen SongSC 2023
- QuCT: A Framework for Analyzing Quantum Circuit by Extracting Contextual and Topological FeaturesSiwei Tan, Congliang Lang, Liang Xiang, Shudi Wang et al.MICRO 2023 · 4 citations
- Q-BEEP: Quantum Bayesian Error Mitigation Employing Poisson Modeling over the Hamming SpectrumSamuel A. Stein, Nathan Wiebe, Yufei Ding, James Ang et al.ISCA 2023 · 13 citations
