使用保扇区通道的量子过程的通用控制

Augustin Vanrietvelde, G. Chiribella
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引用次数: 14

摘要

没有量子电路可以把一个完全未知的酉门变成它的相干控制版本。然而,利用不同类型的初始资源,已经在实验中实现了对未知门的相干控制。在这里,我们将这些实验完成的任务形式化,将其扩展到任意噪声通道的控制,以及涉及高维控制系统的更一般类型的控制。对于相干控制的标准概念,我们确定了用于控制d维系统上任意量子信道的信息论资源:具体来说,该资源是一个扩展的量子信道,充当$(d+1)$维系统的$d维扇区的原始信道。利用这种资源,可以用通用电路架构构建任意控制通道。然后,我们将控制的标准概念扩展到更一般的概念,包括可能具有不同输入和输出系统的多个通道的控制。最后,我们开发了一个理论框架,称为路由通道上的超映射,它提供了连贯控制作为在扩展通道上执行的操作的紧凑表示,并强调了操作作用于不同扇区的方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Universal control of quantum processes using sector-preserving channels
No quantum circuit can turn a completely unknown unitary gate into its coherently controlled version. Yet, coherent control of unknown gates has been realised in experiments, making use of a different type of initial resources. Here, we formalise the task achieved by these experiments, extending it to the control of arbitrary noisy channels, and to more general types of control involving higher dimensional control systems. For the standard notion of coherent control, we identify the information-theoretic resource for controlling an arbitrary quantum channel on a $d$-dimensional system: specifically, the resource is an extended quantum channel acting as the original channel on a $d$-dimensional sector of a $(d+1)$-dimensional system. Using this resource, arbitrary controlled channels can be built with a universal circuit architecture. We then extend the standard notion of control to more general notions, including control of multiple channels with possibly different input and output systems. Finally, we develop a theoretical framework, called supermaps on routed channels, which provides a compact representation of coherent control as an operation performed on the extended channels, and highlights the way the operation acts on different sectors.
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