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Topological phase transition and gate-controlled charge transfer in minimal topological-spin qubit circuit

机译:最小拓扑自旋量子位电路中的拓扑相变和栅极控制的电荷转移

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We propose a minimal topological-spin qubit circuit to investigate the non-Abelian rotations within the degenerate ground-state manifold, as well as the topological phase transition and charge transfer. From a quantum dot, the state of the Majorana system can be read out. Along with the splitting of the degenerate ground-state manifold of a topological qubit, a topological phase transition is observed, showing the existence of a Majorana fermion. By choosing the phase difference across the dots, the non-Abelian rotations and the required energetically degenerate state in the qubit can be achieved, which results in universal quantum computation. Moreover, on the basis of the measurement of the electron in quantum dots and topological qubit, this demonstrates that topologically protected tunnel braids between dots and MBSs are critical to non-Abelian rotations.
机译:我们提出了一个最小的拓扑自旋量子位电路,以研究退化的基态流形内的非阿贝尔旋转,以及拓扑相变和电荷转移。从一个量子点,可以读出马约拉纳系统的状态。随着拓扑量子位的简并基态流形的分裂,观察到拓扑相变,表明存在马约拉那费米子。通过选择跨点的相位差,可以实现非阿贝尔旋转和量子位中所需的能量简并状态,从而实现了通用量子计算。此外,基于对量子点和拓扑量子位中电子的测量,这表明在点和MBS之间的拓扑受保护的隧道辫对于非阿贝尔旋转至关重要。

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