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Control aspects of quantum computing using pure and mixed states

机译:使用纯态和混合态控制量子计算的方面

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摘要

Steering quantum dynamics such that the target states solve classically hard problems is paramount to quantum simulation and computation. And beyond, quantum control is also essential to pave the way to quantum technologies. Here, important control techniques are reviewed and presented in a unified frame covering quantum computational gate synthesis and spectroscopic state transfer alike. We emphasize that it does not matter whether the quantum states of interest are pure or not. While pure states underly the design of quantum circuits, ensemble mixtures of quantum states can be exploited in a more recent class of algorithms: it is illustrated by characterizing the Jones polynomial in order to distinguish between different (classes of) knots. Further applications include Josephson elements, cavity grids, ion traps and nitrogen vacancy centres in scenarios of closed as well as open quantum systems.
机译:指导量子动力学,使目标态解决经典的难题,这对于量子模拟和计算至关重要。除此之外,量子控制对于为量子技术铺平道路也是必不可少的。在这里,重要的控制技术将在一个统一的框架中进行回顾和介绍,该框架涵盖了量子计算门的合成和光谱状态的转移。我们强调,感兴趣的量子态是否纯净无关紧要。虽然纯态是量子电路设计的基础,但量子态的整体混合可以在较新的一类算法中加以利用:通过表征琼斯多项式以区分不同的(类)结来说明这一点。进一步的应用包括封闭和开放量子系统中的约瑟夫森元素,腔栅,离子阱和氮空位中心。

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