CNISM, Unità di Perugia-Dipartimento di Fisica and Università di Perugia, Perugia, Italy.
J Phys Condens Matter. 2012 Jun 13;24(23):236006. doi: 10.1088/0953-8984/24/23/236006. Epub 2012 May 11.
It is well known that Fe films deposited on a c(2 × 2)-reconstructed ZnSe(001) surface show a strong in-plane uniaxial magnetic anisotropy. Here, the effect of the substrate reconstruction on the magnetic anisotropy of Fe has been studied by in situ Brillouin light scattering. We found that the in-plane uniaxial anisotropy is strongly reduced for Fe films grown on a (1 × 1)-unreconstructed ZnSe substrate while the in-plane biaxial one is nearly unaffected by the substrate reconstruction. Calculations of magnetic anisotropy energies within the framework of ab initio density functional theory reveal that the strong suppression of anisotropy at the (1 × 1) interface occurs due to complex atomic relaxations as well as the competing effects originating from magnetocrystalline anisotropy and dipole-dipole interactions. For both sharp and intermixed c(2 × 2) interfaces, the magnetic anisotropy is enhanced compared to the (1 × 1) case due to the further lowering of symmetry. The theoretical results are in agreement with the experimental findings.
众所周知,沉积在 c(2×2)-重构 ZnSe(001)表面上的 Fe 薄膜表现出强烈的面内单轴各向异性。在这里,通过原位布里渊光散射研究了衬底重构对 Fe 磁各向异性的影响。我们发现,在生长在(1×1)-未重构 ZnSe 衬底上的 Fe 薄膜中,面内单轴各向异性大大降低,而面内双轴各向异性几乎不受衬底重构的影响。基于第一性原理密度泛函理论的磁各向异性能量计算表明,由于复杂的原子弛豫以及磁各向异性和偶极-偶极相互作用的竞争效应,在(1×1)界面上各向异性的强烈抑制。对于尖锐和混合的 c(2×2)界面,由于对称性的进一步降低,与(1×1)情况相比,磁各向异性得到增强。理论结果与实验结果一致。