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Absence of the hyperfine magnetic field at the Ru site in ferromagnetic rare-earth intermetallics

机译:铁磁稀土金属间化合物Ru位点上没有超细磁场

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摘要

The Mossbauer effect (ME) is frequently used to investigate magnetically ordered systems. One usually assumes that the magnetic order induces a hyperfine magnetic field, B_(hyperfine), at the ME active site. This is the case in the ruthenates, where the temperature dependence of B_(hyperfine) at ~(99)Ru sites tracks the temperature dependence of the ferromagnetic or antiferromagnetic order. However this does not happen in the rare-earth intermetallics, GdRu_2 and HoRu_2. Specific heat, magnetization, magnetic susceptibility, Mossbauer effect, and neutron diffraction have been used to study the nature of the magnetic order in these materials. Both materials are found to order ferromagnetically at 83.1 and 15.3 K, respectively. Despite the ferromagnetic order of the rare-earth moments in both systems, there is no evidence of a correspondingly large B_(hyperfine) in the Mossbauer spectrum at the Ru site. Instead the measured spectra consist of a narrow peak at all temperatures which points to the absence of magnetic order. To understand the surprising absence of a transferred hyperfine magnetic field, we carried out ab initio calculations which show that spin polarization is present only on the rare-earth site. The electron spin at the Ru sites is effectively unpolarized and, as a result, B_(hyperfine) is very small at those sites. This occurs because the Ad Ru electrons form broad conduction bands rather than localized moments. These 4d conduction bands are polarized in the region of the Fermi energy and mediate the interaction between the localized rare-earth moments.
机译:莫斯鲍尔效应(ME)经常用于研究磁有序系统。通常假设磁阶在ME活性位点感应出超精细磁场B_(hyperfine)。在钌酸盐中就是这种情况,在〜(99)Ru处B_(超细)的温度依赖性跟踪铁磁或反铁磁阶的温度依赖性。但是,稀土金属间化合物GdRu_2和HoRu_2不会发生这种情况。比热,磁化,磁化率,莫斯鲍尔效应和中子衍射已用于研究这些材料中磁序的性质。发现这两种材料在83.1 K和15.3 K时铁磁有序。尽管两个系统中的稀土磁矩都是铁磁有序的,但没有证据表明在Ru站点的Mossbauer谱中有相应大的B_(超细)。取而代之的是,所测得的光谱由在所有温度下的窄峰组成,这表明没有磁序。为了理解令人惊讶的转移超细磁场的缺失,我们进行了从头算计算,该计算表明自旋极化仅存在于稀土部位。 Ru位置的电子自旋实际上是非极化的,因此,这些位置的B_(超细)非常小。发生这种情况是因为Ad Ru电子形成了较宽的导带,而不是局部矩。这些4d导带在费米能量的区域中极化,并介导局部稀土矩之间的相互作用。

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  • 来源
    《Physical review》 |2010年第18期|P.184404.1-184404.11|共11页
  • 作者单位

    Department of Physics, Buffalo State College, Buffalo, New York 14222, USA;

    rnDepartment of Physics, Buffalo State College, Buffalo, New York 14222, USA Department of Physics, SUNY-Buffalo, Buffalo, New York 14260, USA;

    rnDepartment of Physics, California State, Fresno, California 93740, USA;

    rnDepartment of Physics, University of California, San Diego, California 92093, USA;

    rnDepartment of Physics, University of California, San Diego, California 92093, USA;

    rnNIST Center for Neutron Research, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA;

    rnNIST Center for Neutron Research, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA;

    rnNuclear Medicine Department, State University of New York, Buffalo, New York 14260, USA;

    rnNuclear Medicine Department, State University of New York, Buffalo, New York 14260, USA;

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  • 正文语种 eng
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  • 关键词

    moesbauer effect; other gamma-ray spectroscopy; intermetallic compounds; neutron scattering; other ferromagnetic metals and alloys;

    机译:莫斯鲍尔效应其他γ射线光谱学;金属间化合物中子散射其他铁磁金属和合金;

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