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Electric-field control of magnetism in graphene quantum dots: Ab initio calculations

机译:石墨烯量子点中磁场的电场控制:从头算

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Employing ab initio calculations we predict that the magnetic states of hydrogenated diamond-shaped zigzag graphene quantum dots (GQDs), each exhibiting unique electronic structure, can be selectively tuned with gate voltage, through Stark or hybridization electric-field modulation of the spatial distribution and energy of the spin-polarized molecular orbitals, leading to transitions between these states. Electrical read-out of the GQD magnetic state can be accomplished by exploiting the distinctive electrical properties of the various magnetic configurations.
机译:使用从头算的方法,我们预测,通过显示空间分布的Stark或杂化电场调制,每个具有独特电子结构的氢化菱形之字形石墨烯量子点(GQD)的磁态可以通过栅极电压选择性地调谐。自旋极化分子轨道的能量,导致这些状态之间的转换。可以通过利用各种磁性配置的独特电特性来实现GQD磁态的电读出。

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