高基数量子系统中的纠缠

Kaitlin N. Smith, M. Thornton
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引用次数: 4

摘要

量子纠缠是实现量子信息处理算法和量子通信协议的重要现象。虽然纠缠量子态通常用基数2来描述,但更高基数的量子位也可以纠缠。在这项工作中,我们都引入了部分纠缠,这是一个不存在于基数2量子系统的概念,并区分了非二进制量子信息处理系统中的部分纠缠和最大纠缠。我们还开发并提出了高基数最大纠缠产生电路,类似于二元量子系统中著名的贝尔态产生电路。由于高维量子可以受到导致部分或最大纠缠状态的纠缠过程的影响,我们展示了如何组成高基数量子电路来产生这些不同程度的部分量子纠缠。对于基数大于2的一般情况,提供了理论结果,并描述了基于基数4审计的具体结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Entanglement in Higher-Radix Quantum Systems
Entanglement is an important phenomenon that enables quantum information processing algorithms and quantum communications protocols. Although entangled quantum states are often described in radix-2, higher-radix qudits can become entangled as well. In this work, we both introduce partial entanglement, a concept that does not exist for radix-2 quantum systems, and differentiate between partial and maximal entanglement within non-binary quantum information processing systems. We also develop and present higher-radix maximal entanglement generator circuits that are analogous to the well-known Bell state generator for binary quantum systems. Because higher-dimensioned qudits can be subjected to entangling processes that result in either partially or maximally entangled states, we demonstrate how higher-radix qudit circuits can be composed to generate these varying degrees of partial quantum entanglement. Theoretical results are provided for the general case where the radix is greater than two, and specific results based on a nair of radix-4 audits are described.
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