Single-Shot Universality in Quantum LDPC Codes via Code-Switching

ORAL

Abstract

Code-switching is a powerful technique in quantum error correction that allows one to leverage the complementary strengths of different codes to achieve fault-tolerant universal quantum computation. However, existing code-switching protocols that encapsulate recent generalized lattice surgery approaches often either require many rounds of measurements to ensure faulttolerance or suffer from low code rates. We present a single-shot, universal protocol that uses code-switching between high-rate quantum codes to perform fault-tolerant quantum computation. To our best knowledge, our work contains the first universal fault-tolerant quantum computation protocol that achieves what we term single-shot universality on high-rate codes that is characterized by (i) single-shot error correction, (ii) single-shot state preparation, as well as (iii) universal logical gates and logical measurements with constant depth circuits. We achieve this feat with single-shot code-switching between constant-rate 2D hypergraph product (HGP) codes and high-rate 3D HGP codes that can be viewed as a generalization of Bombın's dimensional jump for color codes. In addition, we prove the fault-tolerance of our quantum computation protocol under both the adversarial and local-stochastic noise models. We introduce a vastly simpler recipe to construct high-rate 3D HGP codes with transversal CCZ gates that grants immense flexibility in the choice of expander graphs and local codes, allowing us to expand the search space for codes with good parameters and interesting logical gates. Our work opens an alternative path towards universal fault-tolerant quantum computation with low space-time overhead by circumventing the need for magic state distillation.

*This material is based upon work supported in part by the Defense Advanced Research Projects Agency (DARPA) under Agreement HR00112490357, the NSF QLCI award OMA2120757, the NSFfunded NQVL:QSTD: Pilot: DLPQC and the DoE ASCR Quantum Testbed Pathfinder program (awards No. DE-SC0019040 and No. DE-SC0024220). This work was performed in part at the Kavli Institute for Theoretical Physics (KITP), which is supported by grant NSF PHY-2309135. SJST acknowledges funding and support from Joint Center for Quantum Information and Computer Science (QuICS) Lanczos Graduate Fellowship and the National University of Singapore (NUS) Development Grant.

Publication: Single-Shot Universality in Quantum LDPC Codes via Code-Switching
S. J. S. Tan, Y. Hong, T.-C. Lin, M. J. Gullans, M.-H. Hsieh.
arXiv (2025). https://arxiv.org/abs/2510.08552

Presenters

  • Shi Jie Samuel Tan

    • University of Maryland College Park and QuEra Computing Inc.
    • University of Maryland

Authors

  • Shi Jie Samuel Tan

    • University of Maryland College Park and QuEra Computing Inc.
    • University of Maryland
  • Yifan Hong

    • University of Maryland, College Park
    • University of Colorado, Boulder
    • QuICS and JQI, University of Maryand/NIST
  • Ting-Chun Lin

    • University of California San Diego
    • UCSD
  • Michael J Gullans

    • National Institute of Standards and Technology (NIST)
    • QuICS, University of Maryand/NIST
  • Min-Hsiu Hsieh

    • Hon Hai Research Institute