Published December 3, 2025 | Version v1
Journal article

Quantum Subspace Verification for Error Correction Codes

  • 1. Tsinghua University
  • 2. University of Chicago
  • 3. University of Hong Kong
  • 4. Fudan University

Description

Quantum error correction is pivotal in advancing toward large-scale quantum computation, and efficient verification is crucial for ensuring the high fidelity of code states. Traditional methodologies, such as state tomography, direct fidelity estimation, and state verification, either fall short in measurement efficiency, especially for large-scale systems, or are restricted to some specific states. In this work, we introduce a general framework for quantum subspace verification, enabling efficient and measurement-noise-robust fidelity estimation between a given state and the target subspace with a specified confidence level. By integrating the proposed subspace verification with direct fidelity estimation, we develop a composite protocol that significantly improves the efficiency of verifying the fidelity of general magic logical states, as demonstrated by intuitive numerical results. This improvement stems from the use of subspace verification, which leverages the knowledge of code subspaces to significantly reduce measurement costs. Additionally, we detail the construction of verification operators for typical error correction codes, including general stabilizer codes and quantum low-density parity-check codes, enabling their efficient implementation using practical local measurements. Notably, for certain codes, such as the Calderbank-Shor-Steane codes and quantum low-density parity-check stabilizer codes, we reduce the number of required measurement settings and sample complexity to a constant level using graphical methods. Our approach facilitates efficient and feasible verification of error correction codes and generic magic logical states, advancing their practical implementations on quantum platforms.

Data availability

No data were created or analyzed in this study.

Additional details

Identifiers

DOI
10.1103/fyw6-lq1l
Other
oai:uchicago.tind.io:16644

Funding

National Natural Science Foundation of China
12174216
Fudan University
Quantum Science and Technology-National Science and Technology Major Project
2021ZD0300804
People's Government of Guangdong Province
Guangdong Basic and Applied Basic Research Foundation
University Grants Committee
27300823
People's Government of Guangdong Province
Quantum Science Strategic Initiative
Shanghai Municipal People's Government
Shanghai Science and Technology Innovation Action Plan
Shanghai Municipal People's Government
Shanghai Pilot Program for Basic Research
CCF-Quantum CTek Superconducting Quantum Computing Special Project Research Activities
National Natural Science Foundation of China
12205048
National Natural Science Foundation of China
12575012
National Institutes for Quantum Science and Technology
2021ZD0300702
National Institutes for Quantum Science and Technology
2024ZD0301900
National Institutes for Quantum Science and Technology
2021ZD0302000
University Grants Committee
N_HKU718/23
University Grants Committee
R6010-23

UChicago Information

Division(s)
Pritzker School of Molecular Engineering