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Genuine Multipartite Entanglement in the 3-Photon Decay of Positronium

机译:正电子三光子衰变中的真正多纠缠

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摘要

The electron-positron annihilation into two photons is a standard technology in medicine to observe e.g. metabolic processes in human bodies. A new tomograph will provide the possibility to observe not only direct e + e annihilations but also the 3 photons from the decay of ortho-positronium atoms formed in the body. We show in this contribution that the three-photon state with respect to polarisation degrees of freedom depends on the angles between the photons and exhibits various specific entanglement features. In particular genuine multipartite entanglement, a type of entanglement involving all degrees of freedom, is subsistent if the positronium was in a definite spin eigenstate. Remarkably, when all spin eigenstates are mixed equally, entanglement –and even stronger genuine multipartite entanglement– survives. Due to a “symmetrization” process, however, Dicke-type or W-type entanglement remains whereas GHZ-type entanglement vanishes. The survival of particular entanglement properties in the mixing scenario may make it possible to extract quantum information in the form of distinct entanglement features, e.g., from metabolic processes in human bodies.
机译:电子-正电子an灭为两个光子是医学上观察例如核素的标准技术。人体的新陈代谢过程。一种新的断层扫描仪不仅可以观察到直接的e + e - ations灭,而且还可以观察到体内形成的正正电子原子衰变产生的3个光子。我们在这一贡献中表明,关于偏振自由度的三光子状态取决于光子之间的角度,并表现出各种特定的纠缠特征。如果正电子处于确定的自旋本征态,则特别是真正的多部分纠缠(一种涉及所有自由度的纠缠)将继续存在。值得注意的是,当所有自旋本征态均等混合时,纠缠-甚至更强的真正的多部分纠缠-仍然存在。但是,由于“对称”过程,Dicke型或W型纠缠仍然存在,而GHZ型纠缠消失了。特定的纠缠特性在混合场景中的生存可能使提取纠缠特征形式的量子信息成为可能,例如,从人体的代谢过程中提取量子信息。

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