论文标题
双交换增强的磁性蓝光磁距离
Double-Exchange Enhanced Magnetic Blue-Shift of Mott Gaps
论文作者
论文摘要
强相关性引起的电荷激发的大量能量鸿沟是莫特绝缘子的特征。我们研究Mott GAP如何受到远程抗铁磁秩序的影响。我们的关键发现是,磁性排序增加了莫特的间隙:发生磁性蓝移(MB)。因此,效果与哈伯德模型中的领先顺序中的交换耦合成正比。在具有额外局部旋转的系统中,双交换机制会引起对MBS的额外贡献,这与在领先顺序的跳跃成正比。自旋度和电荷自由度之间的耦合具有仅通过跳和交换来确定的极端时间尺度上的旋转到电荷转换的潜力,因为旋转轨道介导的角动量的转移不涉及该过程。鉴于自旋和宏伟的应用,高度希望观察到几类化合物表现出交换和双交换效应。示例性地,我们表明,在$α$ -MNTE的光导率中观察到的带隙蓝移的磁贡献被正确解释为Mott Gap的MBS。
A substantial energy gap of charge excitations induced by strong correlations is the characteristic feature of Mott insulators. We study how the Mott gap is affected by long-range antiferromagnetic order. Our key finding is that the Mott gap is increased by the magnetic ordering: a magnetic blue-shift (MBS) occurs. Thus, the effect is proportional to the exchange coupling in the leading order in the Hubbard model. In systems with additional localized spins the double-exchange mechanism induces an additional contribution to the MBS which is proportional to the hopping in the leading order. The coupling between spin and charge degrees of freedom bears the potential to enable spin-to-charge conversion in Mott systems on extreme time scales determined by hopping and exchange only, since a spin-orbit mediated transfer of angular momentum is not involved in the process. In view of spintronic and magnonic applications, it is highly promising to observe that several entire classes of compounds show exchange and double-exchange effects. Exemplarily, we show that the magnetic contribution to the band-gap blue-shift observed in the optical conductivity of $α$-MnTe is correctly interpreted as the MBS of a Mott gap.