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Real-Space Imaging of Two-Dimensional Antiferromagnetism on the Atomic Scale

机译:原子尺度上二维反铁磁的真实空间成像

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A two-dimensional antiferromagnetic structure within a pseudomorphic mono-layer film of chemically identical manganese atoms on tungsten(110) was observed with atomic resolution by spin-polarized scanning tunneling microscopy at 16 kelvin. A magnetic superstructure changes the translational symmetry of the surface lattice with respect to the chemical unit cell. It is shown, with the aid of first-principles calculations, that as a result of this, spin-polarized tunneling electrons give rise to an image corresponding to the magnetic superstructure and not to the chemical unit cell. These investigations demonstrate a powerful technique for the understanding of complicated magnetic configurations of nanomagnets and thin films engineered from ferromagnetic and antiferromagnetic materials used for magnetoelectronics.
机译:通过自旋极化扫描隧道显微镜在16开尔文处以原子分辨率观察到了钨(110)上化学相同的锰原子的拟晶单层膜内的二维反铁磁结构。磁性上层结构改变了表面晶格相对于化学晶胞的平移对称性。结果表明,借助于第一性原理计算,自旋极化的隧穿电子产生对应于磁性超结构而不是化学晶胞的图像。这些研究证明了一种强大的技术,可用于理解由用于磁电子学的铁磁和反铁磁材料制成的纳米磁体和薄膜的复杂磁结构。

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