通过电子总线在远距离量子点中纠缠核自旋

Miguel Núñez Bello, M. Benito, M. Schuetz, G. Platero, G. Giedke
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引用次数: 0

摘要

我们提出了一个协议,以确定产生纠缠之间的核自旋两个系综围绕两个遥远的量子点。该协议依赖于在每个量子点注入具有确定极化的电子和电子从一个量子点到另一个量子点的相干转移。计算小系统的精确动力学,并使用有效的主方程和大系统的近似非线性运动方程,我们能够确认我们的协议确实产生了齐次和非齐次系统的纠缠。最后,我们分析了本协议在当前几个实验平台上的可行性。
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Entangling nuclear spins in distant quantum dots via an electron bus
We propose a protocol for the deterministic generation of entanglement between two ensembles of nuclear spins surrounding two distant quantum dots. The protocol relies on the injection of electrons with definite polarization in each quantum dot and the coherent transfer of electrons from one quantum dot to the other. Computing the exact dynamics for small systems, and using an effective master equation and approximate non-linear equations of motion for larger systems, we are able to confirm that our protocol indeed produces entanglement for both homogeneous and inhomogeneous systems. Last, we analyze the feasibility of our protocol in several current experimental platforms.
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