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首页> 外文期刊>Physical review >Electronic structure and magnetism of one-dimensional Fe monatomic wires on Au(788) investigated with ARPES and XMCD
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Electronic structure and magnetism of one-dimensional Fe monatomic wires on Au(788) investigated with ARPES and XMCD

机译:用ARPES和XMCD研究Au(788)上一维Fe单原子导线的电子结构和磁性

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摘要

In this study of fabricated one-dimensional (1D) monatomic Fe wires on a Au(788) substrate, electronic and magnetic features are investigated by angle-resolved photoemission spectroscopy (ARPES) and x-ray magnetic circular dichroism (XMCD). The ARPES spectra show little dispersion both in the parallel and perpendicular directions to the wires revealing a strongly localized nature of the Fe 3d electrons. Finite intensity of the XMCD signals has angular dependence reflecting an anisotropic feature of the localized magnetic moments with an easy axis perpendicular to the substrate. Temperature and field dependence of the XMCD signals shows superparamagnetic behavior well described by the 1D Ising model exhibiting large hysteresis below the blocking temperature, which is ruled by the anisotropy energy. Increase of the average size of the spin blocks with reduced temperature enhances the dramatic change of the magnetic properties of the 1D spin system from soft to hard within a narrow temperature range.
机译:在Au(788)衬底上制作的一维(1D)单原子铁丝的研究中,通过角分辨光发射光谱(ARPES)和X射线磁性圆二色性(XMCD)研究了电子和磁性特征。 ARPES光谱显示在平行和垂直于导线的方向上几乎没有分散,表明Fe 3d电子具有很强的局部性。 XMCD信号的有限强度具有角度依赖性,反映了局部磁矩的各向异性特征,其易轴垂直于基板。 XMCD信号的温度和场依赖性显示出由1D Ising模型很好地描述的超顺磁行为,在各向异性温度以下,在阻断温度以下显示出较大的磁滞,这是由各向异性能决定的。随着温度降低,自旋嵌段的平均尺寸增加,可在狭窄的温度范围内增强一维自旋系统的磁性能从软变硬的剧烈变化。

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