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Demonstration of a Stable Atom-Photon Entanglement Source for Quantum Repeaters

机译:量子中继器的稳定原子-光子纠缠源演示

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We demonstrate a novel way to efficiently create a robust entanglement between an atomic and a photonic qubit. A single laser beam is used to excite one atomic ensemble and two different modes of Raman fields are collected to generate the atom-photon entanglement. With the help of built-in quantum memory, the entanglement still exists after 20.5 μs storage time which is further proved by the violation of Clauser-Horne-Shimony-Holt type Bell's inequality. The entanglement procedure can serve as a building block for a novel robust quantum repeater architecture [Zhao et at, Phys. Rev. Lett. 98, 240502 (2007)] and can be extended to generate high-dimensional atom-photon entanglements.
机译:我们演示了一种新颖的方法,可以有效地在原子和光子量子位之间创建鲁棒的纠缠。单个激光束用于激发一个原子团,并收集两种不同模式的拉曼场以产生原子-光子纠缠。借助内置的量子存储器,在20.5μs的存储时间后纠缠仍然存在,这进一步证明了违反Clauser-Horne-Shimony-Holt类型的Bell不等式。纠缠过程可以作为新型鲁棒量子中继器体系结构的基础[Zhao等,Phys。牧师98,240502(2007)],并且可以扩展以生成高维原子-光子纠缠。

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