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High-efficiency Cooper pair splitting demonstrated by two-particle conductance resonance and positive noise cross-correlation

机译:两粒子电导共振和正噪声互相关证明高效Cooper对分裂

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Entanglement is at the heart of the Einstein-Podolsky-Rosen paradox, where the non-locality is a necessary ingredient. Cooper pairs in superconductors can be split adiabatically, thus forming entangled electrons. Here, we fabricate such an electron splitter by contacting an aluminium superconductor strip at the centre of a suspended InAs nanowire. The nanowire is terminated at both ends with two normal metallic drains. Dividing each half of the nanowire by a gate-induced Coulomb blockaded quantum dot strongly impeds the flow of Cooper pairs due to the large charging energy, while still permitting passage of single electrons. We provide conclusive evidence of extremely high efficiency Cooper pair splitting via observing positive two-particle correlations of the conductance and the shot noise of the split electrons in the two opposite drains of the nanowire. Moreover, the actual charge of the injected quasiparticles is verified by shot noise measurements.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:纠缠是爱因斯坦-波多尔斯基-罗森悖论的核心,其中非本地化是必不可少的因素。超导体中的库珀对可以进行绝热分裂,从而形成纠缠电子。在这里,我们通过在悬浮的InAs纳米线的中心与铝超导体条接触来制造这种电子分离器。纳米线的两端用两个普通的金属漏极端接。将纳米线的每一半除以栅极诱导的库仑阻塞量子点,由于其较大的充电能量而强烈阻碍了库珀对的流动,同时仍允许单个电子通过。我们通过观察纳米线两个相对漏极中分流电子的电导和散粒噪声的正两粒子正相关,提供了极高效的库珀对分裂的确凿证据。此外,通过散粒噪声测量可以验证注入的准粒子的实际电荷。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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