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Switching of spins and entanglement in surface-supported antiferromagnetic chains

机译:表面支撑反铁磁链中自旋和纠缠的转换

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摘要

Previous experimental studies discovered universal growth of chains and nanowires of various chemical elements on a corrugated molecular network of Cu3N on the Cu(110). Herein, performing combined ab initio and quantum Hamiltonian studies we demonstrate that such chains can be used for a fast spin switching and entanglement generation by locally applied magnetic pulses. As an example, we show that in antiferromagnetic Co chains a strong entanglement between ends of chains occurs during spin switching. A novel parity effect in spin dynamics is reported. Even-numbered chains are found to exhibit significantly faster spin switching than odd-numbered counterparts. Moreover, at certain parameters of the system the dimerization effect in the spin dynamics of the chains was found. Our studies give a clear evidence that tailoring spin dynamics and entanglement can be achieved by magnetic fields and by tuning exchange interactions in supported chains.
机译:先前的实验研究发现,在Cu(110)上的Cu3N波纹分子网络上,各种化学元素的链和纳米线普遍生长。本文中,通过进行从头算和量子哈密顿算相的研究,我们证明了这样的链可以通过局部施加的磁脉冲用于快速自旋切换和纠缠生成。例如,我们表明在反铁磁Co链中,自旋切换过程中发生了链末端之间的强纠缠。报告了自旋动力学中的新型奇偶效应。发现偶数链比奇数链显示出明显更快的自旋转换。此外,在系统的某些参数下,发现了链自旋动力学中的二聚作用。我们的研究提供了明确的证据,可以通过磁场和调整支撑链中的交换相互作用来实现自旋动力学和纠缠度的定制。

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