#quantum error correction

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35 papers match

cs.LG2026

QAdapt: A Noise-Adaptive Neural Pre-Decoding Framework for Quantum Error Correction

Ran Miao, Rui Luo, Xiaohan Shan +1

QAdapt is a neural pre‑decoding framework that adapts to changing, heterogeneous quantum hardware noise, captures local spatiotemporal syndrome correlations, and passes a reduced s…

#quantum error correction#surface code#neural decoder#noise adaptation
quant-ph2026

Design of a Quantum Error Correction Decoder Exploiting Temporal Parallelism

Leo Itoh, Takuya Kasamura, Hidetsugu Irie +1

The paper presents a microarchitectural design for a quantum error correction decoder that leverages temporal parallelism and the Union-Find algorithm, implemented as an ASIC, achi…

#quantum error correction#decoder architecture#temporal parallelism#union-find algorithm
quant-ph2026

Efficient atom rearrangements for quantum error correction primitives with a single AOD

Tom Hartweg, Asier Piñeiro Orioli, Asier Piñeiro Orioli +2

The paper introduces efficient primitives for shearing, rotating, and reflecting 2D arrays of neutral atoms using a single dynamic crossed acousto‑optic deflector, dramatically red…

#neutral atoms#quantum error correction#acousto-optic deflector#surface code
quant-ph2026

Logical computation with canonical lifted product codes

Han Zheng, Guo Zheng, Liang Jiang +1

The paper designs a logical instruction set for canonical lifted‑product quantum LDPC codes, enabling low‑overhead, fault‑tolerant operations such as transversal Clifford gates, mo…

#quantum error correction#ldpc codes#fault-tolerant computation#lifted product codes
quant-ph2026

Lifting Lifted Product Codes

Yuta Hirasaki, Jong Yeon Lee

Lifted product (LP) codes form an important class of quantum error correcting codes with favorable code parameters. We introduce a systematic construction of LP code families based…

#quantum error correction#lifted product codes#qldpc codes#graph lifts
quant-ph2026

Quantum LDPC codes with design rate 1/5 and good performance below 1000 physical qubits

Yifan Hong

The paper presents a new family of quantum low-density parity-check codes with a design rate of 1/5, demonstrating good performance on a few hundred physical qubits under realistic…

#quantum error correction#ldpc codes#fault-tolerant quantum computing#quantum hardware