论文标题

用费米子模式编码的传送量子信息

Teleporting quantum information encoded in fermionic modes

论文作者

Debarba, Tiago, Iemini, Fernando, Giedke, Geza, Friis, Nicolai

论文摘要

量子传送被认为是许多量子信息处理任务中的基本原始性,并且已经在各种基于光子和基于物质的设置中实验确认。在这里,我们考虑以费米电场模式编码的量子信息传送。在费米文化系统中,超选择规则导致纠缠和传送的更为差异化。特别是,正如我们在此处详细讨论的那样,人们被迫区分单模纠缠交换,并通过贝尔不平等侵犯或不进行身份验证的Qubit传送,正如我们在这里详细讨论的那样。我们专注于以平价超选择为准的系统,在粒子数不实的情况下,它们与受粒子数量超选择的系统进行对比,这与可能的实际实现有关。最后,我们分析了费米子模式纠缠的操作解释的后果,并检查了所谓的混合最大纠缠状态的有用性。

Quantum teleportation is considered a basic primitive in many quantum information processing tasks and has been experimentally confirmed in various photonic and matter-based setups. Here, we consider teleportation of quantum information encoded in modes of a fermionic field. In fermionic systems, superselection rules lead to a more differentiated picture of entanglement and teleportation. In particular, one is forced to distinguish between single-mode entanglement swapping, and qubit teleportation with or without authentication via Bell inequality violation, as we discuss here in detail. We focus on systems subject to parity superselection where the particle number is not fixed, and contrast them with systems constrained by particle number superselection which are relevant for possible practical implementations. Finally, we analyze the consequences for the operational interpretation of fermionic mode entanglement and examine the usefulness of so-called mixed maximally entangled states for teleportation.

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