In this perspective we discuss verification of quantum devices in the context of specific examples, formulated as proposed experiments. Our first example is verification of analog quantum simulators as Hamiltonian learning, where the input Hamiltonian as design goal is compared with the parent Hamiltonian for the quantum states prepared on the device. The second example discusses cross-device verification on the quantum level, i.e. by comparing quantum states prepared on different quantum devices. We focus in particular on protocols using randomized measurements, and we propose establishing a central data repository, where existing experimental devices and platforms can be compared. In our final example, we address verification of the output of a quantum device from a computer science perspective, addressing the question of how a user of a quantum processor can be certain about the correctness of its output, and propose minimal demonstrations on present day devices.
翻译:从这个角度出发,我们讨论量子装置的核查问题,以具体实例为例,以拟议实验的形式提出。我们的第一个例子是模拟量子模拟器的核查,以汉密尔顿学习为例,将汉密尔顿作为设计目标,与汉密尔顿作为设计目标的母汉密尔顿作为设计目标,讨论量子水平上的跨设备核查问题,即比较不同量子装置上的量子装置的量子状态。我们特别侧重于使用随机测量的规程,我们建议建立一个中央数据储存库,将现有的实验装置和平台加以比较。我们的最后一个例子是从计算机科学角度处理量子装置输出的核查问题,探讨量子处理器的用户如何能够确定其输出的正确性,并提议在今天的装置上进行最低限度的演示。