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Effect of change in number of conduction electrons on the spin configuration in transition metal oxides

机译:过渡金属氧化物中导电电子数量的变化对自旋构型的影响

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摘要

We study the correlation between the spin configuration and the average number of conduction electrons, based on the Kondo lattice type Hamiltonian. We found that a change in the average number of conduction electrons causes a change in the spin configuration. This results from the competition among the strong Coulomb repulsion,Hund’s coupling, and antiferromagnetic interaction. A change in spin configuration from an antiferromagnetic ordering to a spin spiral state can be initiated by slightly doping holes into the half-filled state. We also found that the spin spiral state exhibits a correspondingly larger conductance than the antiferromagnetic state. On the basis of these results,we suggest that it is possible to alter the conductance (transport property) of transition metal oxides by inducing a change in the spin configuration through the application of an external voltage.
机译:基于近藤晶格哈密顿量,我们研究了自旋构型与平均传导电子数之间的相关性。我们发现,平均导电电子数的变化会引起自旋构型的变化。这是由于强大的库仑斥力,洪德耦合和反铁磁相互作用之间的竞争所致。自旋结构从反铁磁有序到自旋螺旋状态的变化可以通过将空穴稍微掺杂到半填充状态而引发。我们还发现,自旋螺旋状态比反铁磁状态具有相应更大的电导。根据这些结果,我们建议可以通过施加外部电压来引起自旋构型的变化,从而改变过渡金属氧化物的电导率(传输性质)。

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