首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Spin Polarization of Metal (Mn, Fe, Cu, and Mg) and Metal-Free Phthalocyanines on an Fe(100) Substrate
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Spin Polarization of Metal (Mn, Fe, Cu, and Mg) and Metal-Free Phthalocyanines on an Fe(100) Substrate

机译:Fe(100)基底上的金属(Mn,Fe,Cu和Mg)和无金属酞菁的自旋极化

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摘要

The electronic structure and spin asymmetry of metal phthalocyanines (Pcs) (metal = Mn, Fe, Cu, and Mg) and metal-free Pc thin films of 1-monolayer (ML) thickness on an Fe(100) substrate were investigated using spin-polarized metastable deexcitation spectroscopy (SPMDS). The surface density-of-state (SDOS) fo these Pcs observed in MDS was almost identical, and thus, insensitivity of the Pc electronic structure ot he variation of the central metal atoms is indicated. On the other hand, the spin asymmetry in the SPMDS measurements exhibited noticeable differences among Pcs. These results are discussed from the viewpoint of the Pcs electronic structure calculated by a discrete variational X α method. The fact that differences are found in the spin asymmetry but not in SDOS among Pcs indicates an important role of the central metal atoms for spin polarization.
机译:利用旋转研究了金属酞菁(Pcs)(金属= Mn,Fe,Cu和Mg)和厚度为1(ML)的无金属Pc薄膜在Fe(100)衬底上的电子结构和自旋不对称性。极化亚稳态去激发光谱(SPMDS)。在MDS中观察到的这些Pcs的表面状态密度(SDOS)几乎相同,因此表明了Pc电子结构的不敏感性以及中心金属原子的变化。另一方面,SPMDS测量中的自旋不对称性在Pcs之间表现出明显的差异。从通过离散变分Xα方法计算的Pcs电子结构的角度讨论了这些结果。 Pcs之间在自旋不对称性中发现差异但在SDOS中未发现差异,这一事实表明中心金属原子对于自旋极化具有重要作用。

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