论文标题

与熵相关性量化三方纠缠

Quantifying Tri-partite Entanglement with Entropic Correlations

论文作者

Schneeloch, James, Tison, Christopher C., Fanto, Michael L., Ray, Shannon, Alsing, Paul M.

论文摘要

我们展示了如何使用从实验相关性得出的熵来量化三方纠缠。我们使用形成纠缠的多目标概括,而当状态是真正的多目标纠缠时,它大于零。我们为三方纠缠的熵见证人开发,并表明违反该证人的程度对形成的三方纠缠处有下限。我们使用GHz-Werner状态和W-Werner状态以及在高维纯国状态下使用三峰波函数来测试我们的结果,并在高维纯状态下测试了三级波函数,这些波函数描述了在第三阶自发参数参数下降中产生的光子和能量纠缠。此外,我们讨论了量化大量当事方的纠缠方面的挑战,并为绕过这个问题的多目标纠缠的熵和目标状态证人提供了挑战。

We show how to quantify tri-partite entanglement using entropies derived from experimental correlations. We use a multi-partite generalization of the entanglement of formation that is greater than zero if and only if the state is genuinely multi-partite entangled. We develop an entropic witness for tripartite entanglement, and show that the degree of violation of this witness places a lower limit on the tripartite entanglement of formation. We test our results in the three-qubit regime using the GHZ-Werner state and the W-Werner state, and in the high-dimensional pure-state regime using the triple-Gaussian wavefunction describing the spatial and energy-time entanglement in photon triplets generated in third-order spontaneous parametric down-conversion. In addition, we discuss the challenges in quantifying the entanglement for progressively larger numbers of parties, and give both entropic and target-state-based witnesses of multi-partite entanglement that circumvent this issue.

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