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EMT/QIS: Robust Quantum Simulation Techniques for Fault-Tolerant Quantum Computation

EMT/QIS: Robust Quantum Simulation Techniques for Fault-Tolerant Quantum Computation
EMT/QIS:用于容错量子计算的鲁棒量子模拟技术
批准号:
0829937
负责人:
Aram Harrow
金额:
$30.0万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-09-01 至 2012-08-31

项目摘要

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中文摘要
翻译
与传统计算机相比,量子计算机提供了基本的算法优势,构建量子计算机将从根本上改变我们计算机的能力。然而,大规模量子计算机很难建立,很大程度上是因为量子系统与环境相互作用并迅速失去其量子性质。这个问题的解决方案,至少在理论上是由容错量子计算理论提供的。容错量子计算理论虽然在原则上证明了量子计算机的可行性,但它需要具有严重复杂性开销的协议。由于这些困难,人们寻求了一种构建鲁棒量子计算机的替代方法,其中多体量子系统通过在适当的受保护自由度中编码这些信息来保护量子信息。在这种方法中,系统的自然物理特性有助于保护量子信息。然而,由于工程量子系统的复杂性,出现了一个困难。这里正在进行的研究旨在克服这一障碍,为构建量子计算机的晶体管等效打开道路。在这里,研究人员研究了三种方法来设计有效的多体相互作用,适用于保护量子信息。, # 64257;RST方法涉及到容错微扰器件的构造。这项研究涉及到研究扰动装置的鲁棒性。第二种方法涉及使用量子电路来模拟哈密顿动力学。在该技术中,研究了容错仿真的新方法。, # 64257;nal技术涉及到时变哈密顿量的使用,研究涉及到对这种时变结构误差的详细研究。
英文摘要
Quantum computers offer fundamental algorithmic advantages over classical computers and building a quantum computer would fundamentally change the power of our computers. Large scale quantum computers, however, are difficult to build in large part due to the fact that quantum systems interact with their environment and quickly lose their quantum nature. The solution to this problem, at least in theory, was provided by the theory of fault-tolerant quantum computation. The theory of fault-tolerant quantum computation, while providing an in principle demonstration of viability of quantum computers, suffers from requiring protocols that have a severe complexity overhead. As a result of these difficulties, an alternative approach toward building a robust quantum computer has been pursued in which many-body quantum systems protect quantum information by encoding this information in suitable protected degrees of freedom. In this approach the natural physics of the system helps protect the quantum information. A difficulty arises, however, due in part to the complexity required of the engineered quantum system. The research being performed here seeks to overcome this obstacle and open the path for constructing the equivalent of a transistor for quantum computers.Here the investigators study three approaches to engineering effective many-body interactions suitable for protecting quantum information. The first approach involves the construction of fault-tolerant perturbation gadgets. This research involves studying the robustness of the perturbation gadgets. The second approach involves the use of quantum circuits to simulate Hamiltonian dynamics. In this technique, research is performed on new methods for fault-tolerant simulation. A final technique involves the use of time-dependent Hamiltonians and the research involves a detailed study of the errors in this time-dependent construction.
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会议论文
AF: Large: Collaborative Research: Reliable Quantum Communication and Computation in the Presence of Noise
CAREER: Applications of Quantum Information Theory
Travel Support for the 15th Quantum Information Processing Workshop (QIP 2012)
  • 批准号:
    1144366
  • 项目类别:
    Standard Grant
  • 资助金额:
    $2.0万
  • 财政年份:
    2011
  • 负责人:
    Aram Harrow
  • 依托单位:
Quantum Concatenated Code Hamiltonians
  • 批准号:
    0803478
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $30.0万
  • 财政年份:
    2008
  • 负责人:
    Aram Harrow
  • 依托单位:
海外基金