Localized statistics decoding for quantum low-density parity-check codes

T Timo Hillmann L Lucas Berent A Armanda O. Quintavalle J Jens Eisert R Robert Wille J Joschka Roffe

Abstract

Abstract Quantum low-density parity-check codes are a promising candidate for fault-tolerant quantum computing with considerably reduced overhead compared to the surface code. However, the lack of a practical decoding algorithm remains a barrier to their implementation. In this work, we introduce localized statistics decoding, a reliability-guided inversion decoder that is highly parallelizable and applicable to arbitrary quantum low-density parity-check codes. Our approach employs a parallel matrix factorization strategy, which we call on-the-fly elimination, to identify, validate, and solve local decoding regions on the decoding graph. Through numerical simulations, we show that localized statistics decoding matches the performance of state-of-the-art decoders while reducing the runtime complexity for operation in the sub-threshold regime. Importantly, our decoder is more amenable to implementation on specialized hardware, positioning it as a promising candidate for decoding real-time syndromes from experiments.

Article Details

Volume / Issue Vol. 16, Issue 1
Published September 02, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (6)

T

Timo Hillmann

L

Lucas Berent

A

Armanda O. Quintavalle

J

Jens Eisert

R

Robert Wille

J

Joschka Roffe