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Quantum error correction and fault-tolerant quantum computation.

机译:量子纠错和容错量子计算。

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摘要

Quantum computers need to be protected by quantum error-correcting codes against decoherence. One of the most interesting and useful classes of quantum codes is the class of quantum stabilizer codes. Entanglement-assisted (EA) quantum codes are a class of stabilizer codes that make use of preshared entanglement between the sender and the receiver. We provide several code constructions for entanglement-assisted quantum codes.;The MacWilliams identity for quantum codes leads to linear programming bounds on the minimum distance. We find new constraints on the simplified stabilizer group and the logical group, which help improve the linear programming bounds on entanglement-assisted quantum codes. The results also can be applied to standard stabilizer codes.;In the real world, quantum gates are faulty. To implement quantum computation fault-tolerantly, quantum codes with certain properties are needed. We first analyze Knill's postselection scheme in a two-dimensional architecture. The error performance of this scheme is better than other known concatenated codes. Then we propose several methods to protect syndrome extraction against measurement errors.
机译:量子计算机需要通过量子纠错码进行保护,以防止退相干。量子代码中最有趣和有用的一类是量子稳定器代码。纠缠辅助(EA)量子代码是一类稳定器代码,它利用发送者和接收者之间的预共享纠缠。我们提供了纠缠辅助量子代码的几种代码构造。量子代码的MacWilliams身份导致最小距离上的线性编程边界。我们在简化的稳定子群和逻辑群上发现了新的约束条件,这有助于改善纠缠辅助量子码的线性编程边界。该结果还可以应用于标准的稳定器代码。在现实世界中,量子门是有缺陷的。为了容错地执行量子计算,需要具有某些特性的量子代码。我们首先在二维架构中分析Knill的后选方案。该方案的错误性能优于其他已知的级联代码。然后,我们提出了几种保护标本提取免受测量误差的方法。

著录项

  • 作者

    Lai, Ching-Yi.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Engineering Electronics and Electrical.;Physics Quantum.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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