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首页> 外文期刊>Nature Communications >Angular momentum transfer from photon polarization to an electron spin in a gate-defined quantum dot
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Angular momentum transfer from photon polarization to an electron spin in a gate-defined quantum dot

机译:从光子偏振到栅极定义的量子点中的光子偏振的角动量转移

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Gate-defined quantum dots (QDs) are such a highly-tunable quantum system in which single spins can be electrically coupled, manipulated, and measured. However, the spins in gate-defined QDs are lacking its interface to free-space photons. Here, we verify that a circularly-polarized single photon can excite a single electron spin via the transfer of angular momentum, measured using Pauli spin blockade (PSB) in a double QD. We monitor the inter-dot charge tunneling which only occur when the photo-electron spin in one QD is anti-parallel to the electron spin in the other. This allows us to detect single photo-electrons in the spin-up/down basis using PSB. The photon polarization dependence of the excited spin state was finally confirmed for the heavy-hole exciton excitation. The angular momentum transfer observed here is a fundamental step providing a route to instant injection of spins, distributing single spin information, and possibly towards extending quantum communication.
机译:门限定量子点(QDS)是这样的高度可调谐量子系统,其中单个旋转可以电耦合,操纵和测量。然而,门定义的QD中的旋转缺少其与自由空间光子的界面。这里,我们验证了循环偏振的单光子可以通过在双QD中使用Pauli旋转阻滞(PSB)测量的角动量来激发单个电子旋转。我们监控仅在一个QD中的光电旋转时才能在另一个QD中的光平行旋转时发生的间隔电荷隧道。这允许我们使用PSB检测旋转/下的单个光电。最终为重孔激发激发确认了激发旋转状态的光子偏振依赖性。这里观察到的角动量传递是提供一种用于即时注入旋转的途径,分配单个自旋信息,并且可能朝向扩展量子通信的途径。

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