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Optical π phase shift created with a single-photon pulse

机译:单光子脉冲产生的光学π相移

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摘要

A deterministic photon-photon quantum logic gate is a long-standing goal. Building such a gate becomes possible if a light pulse containing only one photon imprints a phase shift of π onto another light field. We experimentally demonstrate the generation of such a π phase shift with a single-photon pulse. A first light pulse containing less than one photon on average is stored in an atomic gas. Rydberg blockade combined with electromagnetically induced transparency creates a phase shift for a second light pulse, which propagates through the medium. We measure the π phase shift of the second pulse when we postselect the data upon the detection of a retrieved photon from the first pulse. This demonstrates a crucial step toward a photon-photon gate and offers a variety of applications in the field of quantum information processing.
机译:确定性光子-光子量子逻辑门是一个长期的目标。如果仅包含一个光子的光脉冲将π的相移压印到另一个光场上,则构建这样的门变得可能。我们通过实验证明了单光子脉冲产生的这种π相移。平均包含少于一个光子的第一光脉冲被存储在原子气体中。 Rydberg封锁与电磁感应的透明性相结合,为传播通过介质的第二个光脉冲产生相移。当检测到从第一个脉冲中检索到的光子后重新选择数据时,我们将测量第二个脉冲的π相移。这证明了迈向光子-光子门的关键一步,并在量子信息处理领域提供了多种应用。

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