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Single electron-photon pair creation from a single polarization-entangled photon pair

机译:从单个偏振纠缠光子对创建单个电子-光子对

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Quantum entanglement between different forms of qubits is an indication of the universality of quantum mechanics. Entanglement transfer between light and matter, especially photon and spin, has long been studied as the central concept, but it remains technically challenging for single photons and spins. In this paper, we show paired generation of a single electron in a GaAs quantum dot and a single photon from a single polarization-entangled photon pair. We measure temporal coincidence between the single photo-electron detection and the single photon detection. Considering a single photon polarization is converted to an electron spin via an optical selection rule, the present result indicates the capability of photon to spin entanglement transfer. This may be useful to explore the physics of entanglement transfer and also for applications to quantum teleportation based quantum communication.
机译:不同形式的量子位之间的量子纠缠表明了量子力学的普遍性。长期以来,一直以光与物质(尤其是光子与自旋)之间的纠缠转移作为中心概念进行研究,但对于单光子与自旋仍然存在技术挑战。在本文中,我们显示了在GaAs量子点中单个电子和单个偏振纠缠光子对中单个光子的配对生成。我们测量单光电子检测和单光子检测之间的时间一致性。考虑到通过光选择规则将单个光子极化转换为电子自旋,本结果表明光子具有自旋纠缠转移的能力。这对于探索纠缠转移的物理学以及对基于量子隐形传态的量子通信的应用可能是有用的。

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