arXiv Open Access 2025

Network-Integrated Decoding System for Real-Time Quantum Error Correction with Lattice Surgery

Namitha Liyanage Yue Wu Emmet Houghton Lin Zhong
Lihat Sumber

Abstrak

Existing real-time decoders for surface codes are limited to isolated logical qubits and do not support logical operations involving multiple logical qubits. We present DECONET, a first-of-its-kind decoding system that scales to thousands of logical qubits and supports logical operations implemented through lattice surgery. DECONET organizes compute resources in a network-integrated hybrid tree-grid structure, which results in minimal latency increase and no throughput degradation as the system grows. Specifically, DECONET can be scaled to any arbitrary number of $l$ logical qubits by increasing the compute resources by $O(l \times log(l))$, which provides the required $O(l)$ growth in I/O resources while incurring only an $O(log(l))$ increase in latency-a modest growth that is sufficient for thousands of logical qubits. Moreover, we analytically show that the scaling approach preserves throughput, keeping DECONET backlog-free for any number of logical qubits. We report an exploratory prototype of DECONET, called DECONET/HELIOS, built with five VMK-180 FPGAs, that successfully decodes 100 logical qubits of distance five. For 100 logical qubits, under a phenomenological noise rate of 0.1%, the DECONET/HELIOS has an average latency of 2.40 μs and an inverse throughput of 0.84 μs per measurement round.

Topik & Kata Kunci

Penulis (4)

N

Namitha Liyanage

Y

Yue Wu

E

Emmet Houghton

L

Lin Zhong

Format Sitasi

Liyanage, N., Wu, Y., Houghton, E., Zhong, L. (2025). Network-Integrated Decoding System for Real-Time Quantum Error Correction with Lattice Surgery. https://arxiv.org/abs/2504.11805

Akses Cepat

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Tahun Terbit
2025
Bahasa
en
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arXiv
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Open Access ✓