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Manipulation of Magnetic State in Armchair Black Phosphorene Nanoribbon by Charge Doping

机译:电荷掺杂对扶手椅黑色磷纳米带中磁性态的操纵

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摘要

Using first-principles studies, we investigated the width-dependent magnetic properties of armchair black phosphorene nanoribbons (APNRs) by controlling the electron charge doping. In the unrelaxed APNRs the antiferromagnetic coupling between two phosphorus atoms in the same edge was found. However, the edge magnetic moment vanished after structure relaxation, and all of the APNRs showed a semiconducting feature. Interestingly, the charge doping substantially altered the band structures of the APNRs because the metallic states reappeared in the charge-doped APNRs. Besides this, the magnetic moment was found in the charge-doped systems. We found that the Stoner condition could nicely explain the magnetic moment at the edge atoms. Moreover, we propose that the edge-to-edge magnetic coupling can be manipulated by charge doping because the transition from the antiferromagnetic to ferromagnetic state was achieved. Our findings may bring interesting issues for spintronics applications.
机译:使用第一性原理研究,我们通过控制电子电荷掺杂来研究扶手椅黑色磷光纳米带(APNRs)的宽度依赖性磁性。在未松弛的APNR中,在同一边缘发现了两个磷原子之间的反铁磁耦合。然而,边缘磁矩在结构弛豫后消失,并且所有的APNR都显示出半导体特性。有趣的是,电荷掺杂实质上改变了APNR的能带结构,因为金属态重新出现在电荷掺杂的APNR中。除此之外,在电荷掺杂系统中还发现了磁矩。我们发现,斯托纳条件可以很好地解释边缘原子处的磁矩。此外,我们提出可以通过电荷掺杂来控制边到边的磁耦合,因为实现了从反铁磁状态到铁磁状态的过渡。我们的发现可能为自旋电子学应用带来有趣的问题。

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