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Experimental realization of a multiplexed quantum memory with 225 individually accessible memory cells

机译:具有225个可单独访问的存储单元的多路复用量子存储器的实验实现

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To realize long-distance quantum communication and quantum network, it is required to have multiplexed quantum memory with many memory cells. Each memory cell needs to be individually addressable and independently accessible. Here we report an experiment that realizes a multiplexed DLCZ-type quantum memory with 225 individually accessible memory cells in a macroscopic atomic ensemble. As a key element for quantum repeaters, we demonstrate that entanglement with flying optical qubits can be stored into any neighboring memory cells and read out after a programmable time with high fidelity. Experimental realization of a multiplexed quantum memory with many individually accessible memory cells and programmable control of its addressing and readout makes an important step for its application in quantum information technology.
机译:为了实现远距离量子通信和量子网络,需要具有多个存储单元的多路复用量子存储器。每个存储单元需要分别寻址和独立访问。在这里,我们报告了一个实验,该实验在宏观原子集合中具有225个可单独访问的存储单元,实现了多路DLCZ型量子存储器。作为量子转发器的关键元素,我们证明了与飞行的光量子位的纠缠可以存储到任何相邻的存储单元中,并在可编程时间后以高保真度读出。具有许多可单独访问的存储单元的多路复用量子存储器的实验实现以及对其寻址和读出的可编程控制,使其在量子信息技术中的应用迈出了重要的一步。

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