Optimizing Graph Codes for Measurement-Based Loss Tolerance

IF 11 Q1 PHYSICS, APPLIED
Thomas J. Bell, Love A. Pettersson, Stefano Paesani
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引用次数: 1

Abstract

Graph codes play an important role in photonic quantum technologies as they provide significant protection against qubit loss, a dominant noise mechanism. Here, we develop methods to analyze and optimize measurement-based tolerance to qubit loss and computational errors for arbitrary graph codes. Using these tools we identify optimized codes with up to 12 qubits and asymptotically large modular constructions. The developed methods enable significant benefits for various photonic quantum technologies, as we illustrate with novel all-photonic quantum repeater states for quantum communication and high-threshold fusion-based schemes for fault-tolerant quantum computing.9 MoreReceived 15 December 2022Accepted 13 April 2023DOI:https://doi.org/10.1103/PRXQuantum.4.020328Published by the American Physical Society under the terms of the Creative Commons Attribution 4.0 International license. Further distribution of this work must maintain attribution to the author(s) and the published article's title, journal citation, and DOI.Published by the American Physical SocietyPhysics Subject Headings (PhySH)Research AreasMeasurement-based quantum computingOptical quantum information processingQuantum error correctionQuantum information with atoms & lightQuantum interconnectsQuantum repeatersQuantum Information
基于测量的损耗容忍优化图码
图码在光子量子技术中发挥着重要作用,因为它们提供了对量子比特损失的重要保护,量子比特损失是一种主要的噪声机制。在这里,我们开发了方法来分析和优化基于测量的量子位损失容限和任意图码的计算误差。使用这些工具,我们确定了具有多达12个量子位和渐近大模块化结构的优化代码。所开发的方法为各种光子量子技术带来了显著的好处,正如我们用用于量子通信的新型全光子量子中继器状态和用于容错量子计算的基于高阈值融合的方案所说明的那样根据知识共享署名4.0国际许可协议,美国物理学会doi:https://doi.org/10.1103/PRXQuantum.4.020328Published。这项工作的进一步分发必须保持作者的归属和已发表文章的标题,期刊引用和DOI。发表于美国物理学会物理学科标题(PhySH)研究领域基于测量的量子计算光学量子信息处理量子误差校正原子和光量子互连量子中继量子信息
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
14.60
自引率
0.00%
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