论文标题

与可分离状态分发纠缠:编码和解码缺陷的评估

Distributing entanglement with separable states: assessment of encoding and decoding imperfections

论文作者

McAleese, Hannah, Juska, Gediminas, Jahromi, Iman Ranjbar, Pelucchi, Emanuele, Ferraro, Alessandro, Paternostro, Mauro

论文摘要

可以使用载体分配纠缠,该载体始终与所涉及的其他系统分开。到目前为止,在载体系统相互作用采用理想统一操作形式的情况下,这种效果主要是分析的,因此对非单身或单一错误的鲁棒性产生了未经测试的鲁棒性。我们通过考虑与不完美的统一相互作用的不连贯动态的影响来解决这个问题。特别是,我们确定需要放在相互作用时间以及不一致动力学的强度上的限制。我们发现,只要我们以合适的基础测量载体,我们仍然可以成功分发纠缠。在统一动力学中引入缺陷,我们表明即使存在实质性的统一错误,纠缠也可能是可能的。此外,统一动力学强度的某些变化可以使针对非自动错误的鲁棒性更大。因此,即使在没有瑕疵的情况下无法进行单一操作的实验环境中,仍然可以使用可分离载体在两个系统之间生成纠缠。

Entanglement can be distributed using a carrier which is always separable from the rest of the systems involved. Up to now, this effect has predominantly been analyzed in the case where the carrier-system interactions take the form of ideal unitary operations, thus leaving untested its robustness against either non-unitary or unitary errors. We address this issue by considering the effect of incoherent dynamics acting alongside imperfect unitary interactions. In particular, we determine the restrictions that need to be placed on the interaction time, as well as the strength of the incoherent dynamics. We find that with non-unitary errors, we can still successfully distribute entanglement, provided we measure the carrier in a suitable basis. Introducing imperfections in the unitary dynamics, we show that entanglement gain is possible even with substantial unitary errors. Moreover, certain variations in the strength of the unitary dynamics can allow for greater robustness against non-unitary errors. Therefore, even in experimental settings where unitary operations cannot be carried out without imperfections, it is still possible to generate entanglement between two systems using a separable carrier.

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