Entanglement transfer in a composite electron-ion-photon system.

IF 20.7
Axel Stenquist, Jakob Nicolai Bruhnke, Felipe Zapata, Jan Marcus Dahlström
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Abstract

We study how entanglement in photoionization is transferred from an electron-ion pair to an electron-photon pair by fluorescence. Time-resolved von Neumann entropies are used to establish how information is shared between the particles. Multipartite entanglement, between electron, ion and photon, is found on intermediate timescales. Finally, it is shown how a phase-locked two-pulse sequence allows for the application of time symmetry, mediated by strong coupling, to reveal the entanglement transfer process by measuring the photon number and electron kinetic energy in coincidence.

复合电子-电子-光子系统中的纠缠转移。
我们研究了光电离中的纠缠如何通过荧光从电子-离子对转移到电子-光子对。时间分辨的冯·诺伊曼熵用于确定信息如何在粒子之间共享。在中间时间尺度上发现了电子、离子和光子之间的多部纠缠。最后,展示了锁相双脉冲序列如何允许应用时间对称性,由强耦合介导,通过测量光子数和电子动能的巧合来揭示纠缠转移过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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