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Long-Distance Entanglement between a Multiplexed Quantum Memory and a Telecom Photon

机译:多路复用量子存储器和电信光子之间的长距离纠缠

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Realization of long-distance quantum communication through the quantum repeater network requires a combination of some key elements, including a multiplexed quantum memory for storage of entanglement and a telecom photon for propagation of information through the fiber. Although impressive experimental advances have demonstrated the individual elements, combining these key capabilities together and realizing them in a single experimental system remains a significant challenge. Here, we report an experimental realization of long-distance entanglement between a multiplexed quantum memory with 49 individually accessible memory cells and a telecom photon after transmission in a 10-km optical fiber. Excitation of an atomic ensemble generates narrow-band polarization entanglement between a telecom photon of 1530-nm wavelength and another photon of 780-nm wavelength, which is then stored into a memory cell of a multiplexed atomic quantum memory and read out after a controllable delay. The entanglement is verified through quantum-state tomography after quantum storage in the atomic memory and fiber transmission of the telecom photon. This experiment demonstrates an important step towards realization of long-distance quantum communication networks.
机译:通过量子中继网络实现长距离量子通信需要一些关键元件的组合,包括多路复用量子存储器,用于存储纠缠和电信光子,用于通过光纤传播信息。虽然令人印象深刻的实验进步已经证明了个别元素,但将这些关键能力组合在一起并在单一的实验系统中实现它们仍然是一个重大挑战。在这里,我们在10公里的光纤中传输后,在多路复用量子存储器和电信光子中报告了多路复用量子存储器之间的远距离缠结的实验性实现。原子合奏的激励在1530-nm波长的电信光子和780nm波长的另一光子之间产生窄带偏振缠结,然后将其存储到多路复用原子量子存储器的存储器单元中并在可控延迟之后读出。通过量子存储器在电信光子的原子存储器和光纤传输之后通过量子区断层扫描来验证纠缠。该实验表明了实现长距离量子通信网络的重要一步。

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