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PEET: a Matlab tool for estimating physical gate errors in quantum information processing systems

机译:PEET:一种Matlab工具,用于估计量子信息处理系统中的物理门错误

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A Physical Error Estimation Tool (PEET) is introduced in Matlab for predicting physical gate errors of quantum information processing (QIP) operations by constructing and then simulating gate sequences for a wide variety of user-defined, Hamiltonian-based physical systems. PEET is designed to accommodate the interdisciplinary needs of quantum computing design by assessing gate performance for users familiar with the underlying physics of QIP, as well as those interested in higher-level computing operations. The structure of PEET separates the bulk of the physical details of a system into Gate objects, while the construction of quantum computing gate operations are contained in GateSequence objects. Gate errors are estimated by Monte Carlo sampling of noisy gate operations. The main utility of PEET, though, is the implementation of QuantumControl methods that act to generate and then test gate sequence and pulse-shaping techniques for QIP performance. This work details the structure of PEET and gives instructive examples for its operation.
机译:Matlab中引入了物理错误估计工具(PEET),用于通过构建然后模拟各种用户定义的基于汉密尔顿原理的物理系统的门序列来预测量子信息处理(QIP)操作的物理门错误。 PEET旨在通过为熟悉QIP基本物理知识的用户以及对高级计算操作感兴趣的用户评估门性能来满足量子计算设计的跨学科需求。 PEET的结构将系统的大部分物理细节分离为Gate对象,而量子计算Gate操作的构造包含在GateSequence对象中。门控误差是通过对噪声门控操作的蒙特卡洛采样来估计的。但是,PEET的主要用途是实现QuantumControl方法,该方法用于生成并测试门控序列和脉冲整形技术以实现QIP性能。这项工作详细介绍了PEET的结构,并提供了具有指导意义的示例。

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