无差别光子的连续和确定性全光子簇状态。

Zu-En Su, Boaz Taitler, Ido Schwartz, Dan Cogan, Ismail Nassar, Oded Kenneth, Netanel H Lindner, David Gershoni
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引用次数: 0

摘要

簇态是基于测量的量子信息处理的关键资源。尤其是光子簇态和图态,在量子网络和量子计量学中发挥着不可或缺的作用。我们展示了一种基于半导体量子点的设备,其中的封闭空穴自旋就像量子编织机中的一根针,以亚千兆赫的重复率连续、确定地产生不可分辨的单光子,这些光子在一维簇态中彼此偏振纠缠,并与自旋纠缠在一起。通过将两个不相邻的光子投射到圆形偏振基上,我们可以将自旋与中间发射的光子分离开来。这样,我们就展示了一种产生确定性和连续性全光子簇态的新方法。我们利用偏振层析技术对四个顺序检测到的光子进行了演示,并直接量化了光子簇纠缠的稳健性及其光子生成的确定性。
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Continuous and deterministic all-photonic cluster state of indistinguishable photons.

Cluster states are key resources for measurement-based quantum information processing. Photonic cluster and graph states, in particular, play indispensable roles in quantum network and quantum metrology. We demonstrate a semiconductor quantum dot based device in which the confined hole spin acts as a needle in a quantum knitting machine producing continuously and deterministically at sub-Gigahertz repetition rate single indistinguishable photons which are all polarization entangled to each other and to the spin in a one dimensional cluster state. By projecting two nonadjacent photons onto circular polarization bases we disentangle the spin from the photons emitted in between. This way we demonstrate a novel way for producing deterministic and continuous all-photonic cluster states. We use polarization tomography on four sequentially detected photons to demonstrate and to directly quantify the robustness of the cluster's entanglement and the determinism in its photon generation.

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