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Classical Stern-Gerlach profiles of Mn5 and Mn6 clusters

机译:Mn5和Mn6团簇的经典Stern-Gerlach轮廓

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摘要

Mn5 and Mn6 clusters have recently been found to exhibit Stern-Gerlach profiles marked by a central peak that broadens with the increasing field gradient. The profiles neither exhibit a reminiscence of space quantization as observed through a splitting of beams for the case of free atoms, nor a net deflection characteristic of superparamagnetic relaxations observed in other transition metal clusters. It is proposed that this new behavior results from a weak coupling of localized atomic moments. ab initio electronic structure studies are carried out to show that a Mn5cluster has isomers with spin magnetic moments of 3μB, 13μB, and 23μBwhile a Mn6 cluster has isomers with moments of 2μB, 8μB, 16μB, and 26μB, respectively. The isomers can be obtained by sequential turning of the local atomic moments starting from the ferromagnetic state and can be seen in the negative ion photoelectron spectra of the anions. The weak coupling of the atomic moments, however, leads to unconventional spin dynamics that result in classical broadening of the Stern-Gerlach profiles and lower apparent magnetic moments. The theoretical results illustrate how a combination of the negative ion photodetachment spectroscopy and Stern-Gerlach profiles can provide information on the net spin moment, interatomic spin coupling, and spin dynamics.
机译:最近发现Mn5和Mn6团簇具有Stern-Gerlach轮廓,其中心峰随场梯度的增加而变宽。对于自由原子的情况,这些轮廓既没有表现出通过束分裂所观察到的空间量化的回忆,也没有表现出在其他过渡金属簇中观察到的超顺磁弛豫的净偏转特性。提出这种新行为是由于局部原子矩的弱耦合引起的。从头开始进行的电子结构研究表明,Mn5簇具有自旋磁矩为3μB,13μB和23μB的异构体,而Mn6簇具有自旋磁矩为2μB,8μB,16μB和26μB的异构体。异构体可以通过依次旋转从铁磁态开始的局部原子矩来获得,并且可以在阴离子的负离子光电子能谱中看到。但是,原子矩的弱耦合会导致非常规的自旋动力学,从而导致Stern-Gerlach轮廓的经典展宽和较低的表观磁矩。理论结果说明了负离子光解谱和Stern-Gerlach谱的组合如何提供有关净自旋矩,原子间自旋耦合和自旋动力学的信息。

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