论文标题

基于纳米级的量子计算,沮丧的磁铁中的纳米级螺旋螺旋体

Universal quantum computation based on nanoscale skyrmion helicity qubits in frustrated magnets

论文作者

Xia, Jing, Zhang, Xichao, Liu, Xiaoxi, Zhou, Yan, Ezawa, Motohiko

论文摘要

沮丧的磁铁中的天空具有螺旋性的自由度,在磁性偶极 - 偶极偶极相互作用上,Bloch型Skyrmions的两种不同构型在能量上都受到青睐,并以相反的螺旋性为特征。当天空矩阵的半径属于纳米尺寸时,必须成为量子力学对象。我们基于沮丧的磁铁中Bloch型纳米级天空的两倍变性构建量子。结果表明,基于多层系统中的纳米级天际,可以使用通用量子计算。我们明确地展示了如何构造$π/4 $相移门,Hadamard Gate和CNOT门。通过暂时控制电场和旋转电流来实现单位量子门。通过控制两个相邻层的天空中心之间的距离,通过使用ISING-TYPE交换耦合来实现两倍的门。本机制的优点是不需要外部磁场。我们的结果可能为基于纳米级拓扑旋转纹理的通用量子计算打开了一种可能的方法。

Skyrmions in frustrated magnets have the helicity degree of freedom, where two different configurations of Bloch-type skyrmions are energetically favored by the magnetic dipole-dipole interaction and characterized by opposite helicities. A skyrmion must become a quantum-mechanical object when its radius is of the order of nanometer. We construct a qubit based on the two-fold degeneracy of the Bloch-type nanoscale skyrmions in frustrated magnets. It is shown that the universal quantum computation is possible based on nanoscale skyrmions in a multilayered system. We explicitly show how to construct the $π/4$ phase-shift gate, the Hadamard gate, and the CNOT gate. The one-qubit quantum gates are materialized by temporally controlling the electric field and the spin current. The two-qubit gate is materialized with the use of the Ising-type exchange coupling by controlling the distance between the skyrmion centers in two adjacent layers. The merit of the present mechanism is that an external magnetic field is not necessary. Our results may open a possible way toward universal quantum computations based on nanoscale topological spin textures.

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