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Predictions for the formation of atomic chains in mechanically controllable break-junction experiments

机译:在机械可控的断裂连接实验中预测原子链形成的预测

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We analyze the stability and magnetic properties of infinite zigzag atomic chains of a large number of late third-, fourth-, and fifth-row transition-metal atoms, as well as of the group-IV elements Si, Ge, Sn, and Pb. We find that zigzag chains of third- and fourth-row elements are not stable, while those made of Si, Ge, Sn, Pb, W, Os, Ir, Pt, and Au are. These results correlate well with known data in mechanically controllable break-junction experiments (MCBJEs). We therefore conjecture that the stability of an infinite chain is at least a necessary condition for the formation of a finite-sized one in MCBJEs. We therefore predict that Sn and Os, and possibly W and Pb chains, may be found in those experiments. We also find that the bonds in Hg chains are extremely soft. We finally show that the magnetic moments and anisotropies of Ir and Pt chains show a nontrivial behavior.
机译:我们分析了大量后期第三,第四和第五行过渡金属原子以及第四族元素Si,Ge,Sn和Pb的无限之字形原子链的稳定性和磁性能。我们发现第三和第四行元素的锯齿形链不稳定,而由Si,Ge,Sn,Pb,W,Os,Ir,Pt和Au制成的锯齿形链则不稳定。这些结果与机械可控断开连接实验(MCBJE)中的已知数据很好地相关。因此,我们推测,无限链的稳定性至少是在MCBJE中形成有限大小的链的必要条件。因此,我们预测在这些实验中可能会发现Sn和Os以及W和Pb链。我们还发现汞链中的键非常柔软。我们最终表明,Ir和Pt链的磁矩和各向异性表现出非平凡的行为。

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