新科学想法 学术文库 学术文献 浏览文献

Reducing intrinsic decoherence in a superconducting circuit by quantum error detection

zqyin 添加于 2013-9-3 09:39 | 1367 次阅读 | 0 个评论
  •  作 者

    Zhong YP, Wang ZL, Martinis JM, Cleland AN, Korotkov AN, Wang H
  •  摘 要

    A fundamental challenge for quantum information processing is reducing the impact of environmentally-induced errors. Quantum error detection (QED) provides one approach to handling such errors, in which errors are rejected when they are detected. Here we demonstrate a QED protocol based on the idea of quantum un-collapsing, using this protocol to suppress energy relaxation due to the environment in a three-qubit superconducting circuit. We encode quantum information in a target qubit, and use the other two qubits to detect and reject errors caused by energy relaxation. This protocol improves the storage time of a quantum state by a factor of roughly three, at the cost of a reduced probability of success. This constitutes the first experimental demonstration of an algorithm-based improvement in the lifetime of a quantum state stored in a qubit.
  •  详细资料

    • 关键词: quant-ph; cond-mat.supr-con
    • 文献种类: Manual Script
    • 期卷页: 2013
    • 日期: 2013-9-1
    • 发布方式: arXiv e-prints
    • 备注:arXiv:1309.0198v1; 10 pages, 5 figures, and 1 table including Supplementary Information
  • 学科领域 自然科学 » 物理学

  • 相关链接  URL 

  •  zqyin 的文献笔记  订阅


管理选项: 导出文献|

评论(0 人)

facelist doodle 涂鸦板

Copyright;  © 新科学想法 2016-2017   浙公网安备 33010202000686号   ( 浙ICP备09035230号-1 )