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Direct observation of finite size effects in chains of antiferromagnetically coupled spins

机译:直接观察反铁磁耦合自旋链中有限尺寸效应

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摘要

Finite spin chains made of few magnetic ions are the ultimate-size structures that can be engineered to perform spin manipulations for quantum information devices. Their spin structure is expected to show finite size effects and its knowledge is of great importance both for fundamental physics and applications. Until now a direct and quantitative measurement of the spatial distribution of the magnetization of such small structures has not been achieved even with the most advanced microscopic techniques. Here we present measurements of the spin density distribution of a finite chain of eight spin-3/2 ions using polarized neutron diffraction. The data reveal edge effects that are a consequence of the finite size and of the parity of the chain and indicate a noncollinear spin arrangement. This is in contrast with the uniform spin distribution observed in the parent closed chain and the collinear arrangement in odd-open chains.
机译:由极少的磁性离子组成的有限的自旋链是最终尺寸的结构,可以设计用于执行量子信息设备的自旋操纵。预计它们的自旋结构将显示有限的尺寸效应,并且其知识对于基础物理学和应用都非常重要。到目前为止,即使使用最先进的显微技术,也无法实现对这种小结构的磁化空间分布的直接和定量测量。在这里,我们介绍了使用极化中子衍射对八个自旋3/2离子的有限链的自旋密度分布的测量。数据揭示了边缘效应,该效应是链的有限大小和奇偶性的结果,并指示非共线自旋排列。这与在亲本封闭链中观察到的均匀自旋分布和奇数开放链中的共线排列形成对比。

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