论文标题
经典可更换操作
Classically Replaceable Operations
论文作者
论文摘要
量子信息科学提供了超出古典物理范围的强大技术。实际上,对量子操作的准确控制是当前量子设备的一项艰巨的任务。高保真度和多量量子操作的实施会消耗大量资源,并需要复杂的硬件设计来与噪音作斗争。减轻此问题的一种方法是用经典处理代替量子操作。尽管采用了这种方法的常见练习,但仍缺少经典的严格标准来确定特定的量子操作是否可以更换。在这项工作中,我们在四种一般情况下定义了经典可更换的操作。在每种情况下,我们都提供其必要和充分的标准,并指出相应的经典处理。对于实际上是经典可更换的操作的实际上有利的案例,我们表明所替代的经典处理是确定性的。除此之外,我们将量子操作通过经典处理的不替代性视为量子资源,并将其与非本地游戏中的频道的性能相关联,这表现为鲁棒性度量。
Quantum information science provides powerful technologies beyond the scope of classical physics. In practice, accurate control of quantum operations is a challenging task with current quantum devices. The implementation of high fidelity and multi-qubit quantum operations consumes massive resources and requires complicated hardware design to fight against noise. An approach to alleviating this problem is to replace quantum operations with classical processing. Despite the common practice of this approach, rigorous criteria to determine whether a given quantum operation is replaceable classically are still missing. In this work, we define the classically replaceable operations in four general scenarios. In each scenario, we provide their necessary and sufficient criteria and point out the corresponding classical processing. For a practically favorable case of unitary classically replaceable operations, we show that the replaced classical processing is deterministic. Beyond that, we regard the irreplaceability of quantum operations by classical processing as a quantum resource and relate it to the performance of a channel in a non-local game, as manifested in a robustness measure.