Published June 24, 2025 | Version Published
Journal Article Open

Stabilizer ground states for simulating quantum many-body physics: theory, algorithms, and applications

  • 1. ROR icon California Institute of Technology
  • 2. ROR icon Hong Kong University of Science and Technology
  • 3. ROR icon Institute of Physics

Abstract

Stabilizer states, which are also known as the Clifford states, have been commonly utilized in quantum information, quantum error correction, and quantum circuit simulation due to their simple mathematical structure. In this work, we apply stabilizer states to tackle quantum many-body ground state problems and introduce the concept of stabilizer ground states. We establish an equivalence formalism for identifying stabilizer ground states of general Pauli Hamiltonians. Moreover, we develop an exact and linear-scaled algorithm to obtain stabilizer ground states of 1D local Hamiltonians and thus free from discrete optimization. This proposed equivalence formalism and linear-scaled algorithm are not only applicable to finite-size systems, but also adaptable to infinite periodic systems. The scalability and efficiency of the algorithms are numerically benchmarked on different Hamiltonians. Finally, we demonstrate that stabilizer ground states are promising tools for not only qualitative understanding of quantum systems, but also cornerstones of more advanced classical or quantum algorithms.

Copyright and License

This Paper is published in Quantum under the Creative Commons Attribution 4.0 International (CC BY 4.0) license. Copyright remains with the original copyright holders such as the authors or their institutions.

Acknowledgement

The authors thank the insightful discussions from Prof. Garnet K.L. Chan and Dr. Tomislav Begusic, and appreciate the valuable suggestions and comments from the reviewers. SXZ acknowledges the support from a start-up grant at IOP-CAS (E4VK061).

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Additional details

Additional titles

Alternative title
Stabilizer ground states: theory, algorithms and applications

Related works

Is new version of
Discussion Paper: arXiv:2403.08441 (arXiv)

Funding

Institute of Physics, Chinese Academy of Sciences
E4VK061

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Caltech groups
Division of Chemistry and Chemical Engineering (CCE)
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Published