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Absence of half-metallicity in defect-free digital magnetic heterostructures 5-doped with Cr and Mn

机译:掺有Cr和Mn的无缺陷数字磁异质结构中不存在半金属性

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摘要

We present the results of combined density functional and many-body calculations of the electronic and magnetic properties of the defect-free digital ferromagnetic heterostructures obtained by doping GaAs with Cr and Mn. While the local-density approximation +U predicts half-metallicity in these defect-free delta-doped heterostructures, we demonstrate that local many-body correlations captured by dynamical mean-field theory induce within the minority-spin channel nonquasiparticle states just above EF. As a consequence of the existence of these many-body states the half-metallic gap is closed and the carriers' spin polarization is significantly reduced. Below the Fermi level the minority-spin highest valence states are found to localize more on the GaAs layers, being independent of the type of electronic correlations considered. Thus, our results confirm the confinement of carriers in these delta-doped heterostructures, having a spin polarization that follows a different temperature dependence than the magnetization. We suggest that polarized hot-electron photoluminescence experiments might uncover evidence for the existence of many-body states within the minority-spin channel and elucidate their finite-temperature behavior.
机译:我们提出了通过对GaAs掺杂Cr和Mn获得的无缺陷数字铁磁异质结构的电子和磁性性质的密度函数和多体计算的组合结果。尽管局部密度近似+ U预测了这些无缺陷的δ掺杂异质结构中的半金属性,但我们证明了由动态平均场理论捕获的局部多体相关性正好在EF之上的少数自旋通道非准粒子状态中。由于存在这些多体态,半金属间隙被封闭,载流子的自旋极化大大降低。在费米能级以下,发现少数自旋最高价态在GaAs层上的定位更多,而与所考虑的电子相关类型无关。因此,我们的结果证实了载流子被限制在这些δ掺杂异质结构中,其自旋极化遵循与磁化强度不同的温度依赖性。我们建议偏振热电子光致发光实验可能会发现少数自旋通道内存在多体态的证据,并阐明它们的有限温度行为。

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  • 来源
    《Physical review》 |2011年第12期|p.125107.1-125107.9|共9页
  • 作者单位

    Department of Physics, University of Oradea, RO-410087 Oradea, Romania;

    Department of Physics, University of Oradea, RO-410087 Oradea, Romania;

    Department of Physics, University of Oradea, RO-410087 Oradea, Romania;

    Department of Physics, University of Oradea, RO-410087 Oradea, Romania;

    Applied Materials Physics, Department of Materials Science and Engineering, Royal Institute of Technology, Stockholm SE-100 44, Sweden,Department of Physics and Materials Science, Uppsala University, PO Box 516, SE-75120 Uppsala, Sweden,Research Institute for Solid State Physics and Optics, Budapest H-1525, PO Box 49, Hungary;

    Augsburg Center for Innovative Technologies, University of Augsburg, D-86135 Augsburg, Germany,Theoretical Physics III, Center for Electronic Correlations and Magnetism, Institute of Physics, University of Augsburg,D-86135 Augsburg, Germany;

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  • 关键词

    other ferromagnetic metals and alloys; lattice fermion models (hubbard model, etc.); electron density of states and band structure of crystalline solids; strongly correlated electron systems; heavy fermions;

    机译:其他铁磁金属和合金;格子费米子模型(哈伯德模型等);态固体的电子态密度和能带结构;强相关电子系统;重费米子;

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