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Perpendicular magnetic anisotropy of two-dimensional Rashba ferromagnets

机译:二维Rashba铁磁体的垂直磁各向异性

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摘要

We compute the magnetocrystalline anisotropy energy within two-dimensional Rashba models. For a ferromagnetic free-electron Rashba model, the magnetic anisotropy is exactly zero regardless of the strength of the Rashba coupling, unless only the lowest band is occupied. For this latter case, the model predicts in-plane anisotropy. For a more realistic Rashba model with finite band width, the magnetic anisotropy evolves from in-plane to perpendicular and back to in-plane as bands are progressively filled. This evolution agrees with first-principles calculations on the interfacial anisotropy, suggesting that the Rashba model captures energetics leading to anisotropy originating from the interface provided that the model takes account of the finite Brillouin zone. The results show that the electron density modulation by doping or an external voltage is more important for voltage-controlled magnetic anisotropy than the modulation of the Rashba parameter.
机译:我们在二维Rashba模型中计算磁晶各向异性能。对于铁磁自由电子Rashba模型,除非Rashba耦合的强度最高,否则其磁各向异性将完全为零,而与Rashba耦合的强度无关。对于后一种情况,模型可预测面内各向异性。对于具有有限带宽的更现实的Rashba模型,随着带的逐渐填充,磁各向异性从平面内演化到垂直,再回到平面内。这种演变与关于界面各向异性的第一性原理计算相吻合,这表明只要模型考虑有限的布里渊区,Rashba模型就可以捕获导致界面各向异性的高能学。结果表明,通过掺杂或外部电压进行的电子密度调制对于电压控制的磁各向异性比Rashba参数的调制更为重要。

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