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Probing quantum entanglement in the Schwarzschild space-time beyond the single-mode approximation

机译:超出单模近似超出超大时空的量子缠结

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摘要

In this paper, we deduce the vacuum structure for Dirac fields in the background of Schwarzschild space-time beyond the single-mode approximation and discuss the performance of quantum entanglement between particle and antiparticle modes of a Dirac field with Hawking effect. It is shown that Hawking radiation does not always destroy the physically accessible entanglement, and entanglement amplification may happen in some cases. This striking result is different from that of the single-mode approximation, which holds that the Hawking radiation can only destroy entanglement. Lastly, we analyze the physically accessible entanglement relation outside the event horizon and demonstrate that the monogamy inequality is constantly established regardless of the choice of given parameters.
机译:在本文中,我们推导了Schwarzschild时空背景下的狄拉克领域的真空结构,超出了单模近似,并探讨了尖端效应的粒子和抗岩模式粒子与抗粒子模式的量子缠结的性能。 结果表明,Hawking辐射并不总是破坏物理上可访问的缠结,并且在某些情况下可能发生纠缠放大。 这种引人注目的结果与单模近似的结果不同,这使得霍金辐射只能破坏缠结。 最后,我们分析了事件范围之外的物理可访问的纠缠关系,并证明无论给定参数的选择如何,不断建立单一的不等式。

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