Multiplexed Quantum Communication with Surface and Hypergraph Product Codes

IF 5.1 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Quantum Pub Date : 2025-01-28 DOI:10.22331/q-2025-01-28-1613
Shin Nishio, Nicholas Connolly, Nicolò Lo Piparo, William John Munro, Thomas Rowan Scruby, Kae Nemoto
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Abstract

Connecting multiple processors via quantum interconnect technologies could help overcome scalability issues in single-processor quantum computers. Transmission via these interconnects can be performed more efficiently using quantum multiplexing, where information is encoded in high-dimensional photonic degrees of freedom. We explore the effects of multiplexing on logical error rates in surface codes and hypergraph product codes. We show that, although multiplexing makes loss errors more damaging, assigning qubits to photons in an intelligent manner can minimize these effects, and the ability to encode higher-distance codes in a smaller number of photons can result in overall lower logical error rates. This multiplexing technique can also be adapted to quantum communication and multimode quantum memory with high-dimensional qudit systems.
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曲面和超图积码的多路量子通信
通过量子互连技术连接多个处理器可以帮助克服单处理器量子计算机的可扩展性问题。通过这些互连的传输可以使用量子多路复用更有效地执行,其中信息以高维光子自由度编码。我们探讨了多路复用对表面码和超图积码的逻辑错误率的影响。我们表明,尽管多路复用使丢失错误更具破坏性,但以智能方式将量子比特分配给光子可以最大限度地减少这些影响,并且在更少的光子中编码更高距离代码的能力可以导致总体上更低的逻辑错误率。这种多路复用技术也适用于高维量子比特系统的量子通信和多模量子存储。
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来源期刊
Quantum
Quantum Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
9.20
自引率
10.90%
发文量
241
审稿时长
16 weeks
期刊介绍: Quantum is an open-access peer-reviewed journal for quantum science and related fields. Quantum is non-profit and community-run: an effort by researchers and for researchers to make science more open and publishing more transparent and efficient.
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