利用超纠缠对的两能级中性原子进行纠缠交换

IF 2.5 Q3 QUANTUM SCIENCE & TECHNOLOGY
Syed Sajal Hasan, Syed Muhammad Arslan Anis, Muhammad Imran, Rameez-ul Islam, Saif Al-Kuwari, Tasawar Abbas
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引用次数: 0

摘要

超纠缠交换是一种量子通信技术,它涉及到多自由度纠缠量子态的超纠缠态交换,以实现安全高效的量子信息传输。在本文中,我们通过原子布拉格衍射的数学框架展示了在不同的中性原子对之间进行超纠缠交换的原理图,该原理是有效的和抗退相干的,产生了具有优越整体保真度的确定性结果。所利用的空腔处于叠加态,并与进入的原子发生非共振相互作用。空腔携带的量子信息通过与两能级辅助原子的共振相互作用进行交换。我们还讨论了延迟选择场景下的纠缠交换,并提供了涵盖多量子位场景的原理图概括。最后,我们引入了具体的实验参数来验证该方案的实验可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Entanglement swapping using hyperentangled pairs of two-level neutral atoms

Hyperentangled swapping is a quantum communication technique that involves the exchange of hyperentangled states, which are quantum states entangled in multiple degrees of freedom, to enable secure and efficient quantum information transfer. In this paper, we demonstrate schematics for the hyperentanglement swapping between separate pairs of neutral atoms through the mathematical framework of atomic Bragg diffraction, which is efficient and resistant to decoherence, yielding deterministic results with superior overall fidelity. The utilised cavities are in a superposition state and interact with the incoming atoms off-resonantly. Quantum information carried by the cavities is swapped through resonant interactions with two-level auxiliary atoms. We also discuss entanglement swapping under a delayed-choice scenario and provide a schematic generalisation covering multiple-qubit scenarios. Finally, we introduce specific experimental parameters to demonstrate the experimental feasibility of the scheme.

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CiteScore
6.70
自引率
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