论文标题

离子运输和重新排序在二维陷阱阵列中

Ion transport and reordering in a two-dimensional trap array

论文作者

Wan, Y., Jördens, R., Erickson, S. D., Wu, J. J., Bowler, R., Tan, T. R., Hou, P. -Y., Wineland, D. J., Wilson, A. C., Leibfried, D.

论文摘要

缩放量子信息处理器是一项具有挑战性的任务,需要操纵大量具有高保真度和高度连接性的量子位。对于被困的离子,可以在二维互连陷阱中实现,其中离子分离,运输和重新组合以在小离子的小亚群上进行量子操作。在这里,我们使用在二维(2D)陷阱阵列中连接正交线性段的连接处来重新排序两离子晶体。离子的世俗运动经历了低能量增益,并且内部Qubit水平在重新排序过程中保持一致性,因此证明了一种有希望的方法,可以在大规模,两维捕获的离子量子信息处理器中提供全能的连通性。

Scaling quantum information processors is a challenging task, requiring manipulation of a large number of qubits with high fidelity and a high degree of connectivity. For trapped ions, this could be realized in a two-dimensional array of interconnected traps in which ions are separated, transported and recombined to carry out quantum operations on small subsets of ions. Here, we use a junction connecting orthogonal linear segments in a two-dimensional (2D) trap array to reorder a two-ion crystal. The secular motion of the ions experiences low energy gain and the internal qubit levels maintain coherence during the reordering process, therefore demonstrating a promising method for providing all-to-all connectivity in a large-scale, two- or three-dimensional trapped-ion quantum information processor.

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