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Analysis of an experimental quantum logic gate by complementary classical operations

机译:通过互补经典运算分析实验性量子逻辑门

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Quantum logic gates can perform calculations much more efficiently than their classical counterparts. However, the level of control needed to obtain a reliable quantum operation is correspondingly higher. In order to evaluate the performance of experimental quantum gates, it is therefore necessary to identify the essential features that indicate quantum coherent operation. In this paper, we show that an efficient characterization of an experimental device can be obtained by investigating the classical logic operations on a pair of complementary basis sets. It is then possible to obtain reliable predictions about the quantum coherent operations of the gate such as entanglement generation and Bell state discrimination even without performing these operations directly.
机译:量子逻辑门的计算效率比经典逻辑门高得多。然而,获得可靠的量子操作所需的控制水平相应地更高。为了评估实验量子门的性能,因此有必要确定表明量子相干操作的基本特征。在本文中,我们表明可以通过研究一对互补基础集上的经典逻辑运算来获得实验设备的有效表征。这样,即使不直接执行这些操作,也可以获得有关门的量子相干操作(例如纠缠生成和贝尔状态判别)的可靠预测。

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