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U.S.-Germany Cooperative Research: Quantum Computing with Mesoscopic Superconductors

U.S.-Germany Cooperative Research: Quantum Computing with Mesoscopic Superconductors
美德合作研究:介观超导体量子计算
批准号:
0128914
负责人:
Terry Orlando
金额:
$1.4万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-03-15 至 2006-02-28

项目摘要

项目成果

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中文摘要
翻译
0128914奥兰多这个奖项支持特里奥兰多和麻省理工学院的学生在一个与弗兰克威廉的物理系在慕尼黑,德国大学的合作。 该国际项目的目标是最大限度地提高超导量子比特的量子相干性,以便在全尺寸量子计算机中使用。 美方将开展实验,分析量子计算和控制问题,并探索量子比特之间的新耦合方法,沿着超导系统中的内在退相干机制。 德国方面将提供必要的理论模型,这些模型将给出用于实验的定量预测。 这一共同努力可能会产生量子计算的新概念、量子门的实现、允许显式构建控制脉冲的数值工具以及新的耦合方案和退相干机制。 工作计划规定研究生广泛参与国际旅行和研究。
英文摘要
0128914OrlandoThis award supports Terry Orlando and students from MIT in a collaboration with Frank Wilhelm of the Department of Physics at the University of Munich, Germany. The aim of the international project is to maximize the quantum coherence of superconducting quantum bits for possible use in a full-scale quantum computer. The US side will conduct experiments, analyze quantum computing and control issues, and explore new coupling methods between qubits along with intrinsic decoherence mechanisms in the superconducting system. The German side will provide indispensible theoretical models which will give quantitative predictions for application to the experiments. The combined effort could result in new concepts of quantm computation, the realization of quantum gates, numerical tools to allow the explicit construction of control pulses, and new coupling schemes and decoherence mechanisms. The work plan provides for extensive participation by graduate students in the international travel and research.
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会议论文
Dynamical Decoupling, Error Mitigation and Noise Correlations in Multi-Qubit Systems
Dynamic Decoupling and Noise Characterization in Superconducting Qubits
Quantization and Nonlinear Dynamics of Discrete Superconducting Networks
Vortex Motion and Dynamical States in Josephson Arrays
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