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首页> 外文期刊>Physical review >Giant optical Faraday rotation induced by a single-electron spin in a quantum dot: Applications to entangling remote spins via a single photon
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Giant optical Faraday rotation induced by a single-electron spin in a quantum dot: Applications to entangling remote spins via a single photon

机译:量子点中单电子自旋引起的巨大法拉第光学旋转:通过单光子纠缠远程自旋的应用

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摘要

We propose a quantum nondemolition method-a giant optical Faraday rotation near the resonant regime to measure a single-electron spin in a quantum dot inside a microcavity where a negatively charged exciton strongly couples to the cavity mode. Left-circularly and right-circularly polarized lights reflected from the cavity obtain different phase shifts due to cavity quantum electrodynamics and the optical spin selection rule. This yields giant and tunable Faraday rotation that can be easily detected experimentally. Based on this spin-detection technique, a deterministic photon-spin entangling gate and a scalable scheme to create remote spin entanglement via a single photon are proposed.
机译:我们提出了一种量子非爆破方法-共振态附近的法拉第旋光,以测量微腔内部带负电荷的激子与腔模强烈耦合的量子点中的单电子自旋。由于腔量子电动力学和光学自旋选择规则,从腔反射的左旋圆偏振光和右旋圆偏振光获得不同的相移。这产生了巨大且可调的法拉第旋转,可以通过实验轻松地检测到。基于这种自旋检测技术,提出了确定性光子自旋纠缠门和可扩展方案,以通过单个光子产生远程自旋纠缠。

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