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Controllably releasing long-lived quantum memory for photonic polarization qubit into multiple spatially-separate photonic channels

机译:可控地将光子偏振量子位的长寿命量子存储器释放到多个空间分离的光子通道中

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摘要

We report an experiment in which long-lived quantum memories for photonic polarization qubits (PPQs) are controllably released into any one of multiple spatially-separate channels. The PPQs are implemented with an arbitrarily-polarized coherent signal light pulses at the single-photon level and are stored in cold atoms by means of electromagnetic-induced-transparency scheme. Reading laser pulses propagating along the direction at a small angle relative to quantum axis are applied to release the stored PPQs into an output channel. By changing the propagating directions of the read laser beam, we controllably release the retrieved PPQs into 7 different photonic output channels, respectively. At a storage time of δt = 5 μs, the least quantum-process fidelity in 7 different output channels is ~89%. At one of the output channels, the measured maximum quantum-process fidelity for the PPQs is 94.2% at storage time of δt = 0.85 ms. At storage time of 6 ms, the quantum-process fidelity is still beyond the bound of 78% to violate the Bell’s inequality. The demonstrated controllable release of the stored PPQs may extend the capabilities of the quantum information storage technique.
机译:我们报告了一个实验,其中光子极化量子位(PPQs)的长寿命量子存储器被可控地释放到多个空间分离的通道中的任何一个中。 PPQ通过单光子级的任意偏振相干信号光脉冲实现,并通过电磁感应透明方案存储在冷原子中。施加沿相对于量子轴的小角度方向传播的读取激光脉冲,以将存储的PPQ释放到输出通道中。通过更改读取激光束的传播方向,我们可控地将检索到的PPQ分别释放到7个不同的光子输出通道中。在δt= 5μs的存储时间下,在7个不同输出通道中最小的量子过程保真度约为89%。在一个输出通道上,在存储时间为δt= 0.85 ms时,PPQs的最大量子过程保真度为94.2%。在6μms的存储时间下,量子过程的保真度仍超出了78%的界限,足以违反贝尔的不等式。所存储的PPQ的可控释放可能会扩展量子信息存储技术的功能。

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