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57Fe Mossbauer-effect studies of Ca-rich, Fe-bearing clinopyroxenes: Part III. Diopside

机译:富含钙的,含铁的环吡咯酮的57Fe Mossbauer效应研究:第三部分。透辉石

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摘要

Three natural Fe-bearing diopside samples, hereafter labeled Dp1, Dp2, and Dp3, have been examined by Mössbauer spectroscopy at temperatures from 4.2–800 K. The Fe contents are 0.01, 0.06, and 0.30 atoms per formula unit (apfu), respectively. All three species contain some Fe in the trivalent state. The spectra are adequately described by a superposition of three quadrupole doublets arising from Fe2+(M1), Fe2+(M2), and Fe3+. The Fe3+ fraction seems to increase with increasing total Fe. The coordination of the ferric ions could not be inferred, but the observed line broadening of the Fe3+ doublet indicates that they possibly substitute at both M1 and M2. The ferrous ions have a strong preference for the M1 sites. For the ferroan diopside sample Dp3 a spectrum at 80 K in an applied field of 60 kOe was recorded to determine the signs and the asymmetry parameters of the electric-field gradient. The signs are all negative and the asymmetry is large (~0.9), implying that an additional distortion is superimposed on the trigonal compression of the polyhedra. The center shifts for the two Fe2+ sites are equal within experimental error limits. From their temperature variations, equal values for the lattice temperatures, M, and hence for their recoilless fractions, f2, at any given temperature have been deduced. The recoilless fraction, f3, for Fe3+ is higher. The f2/f3 ratio was found to be ~0.95 at 80 K, and decreases with increasing temperature. The temperature variations of the ferrous quadrupole splittings show the importance of spin-orbit coupling. They were calculated from the thermal populations of the 25 electronic levels within the 5D term. The energies of these levels were determined by diagonalization of the complete crystal-field Hamiltonian. For the numerical expression of this Hamiltonian, use was made of the point-charge approach, which takes into account the real point symmetry of the M1 and M2 lattice sites by considering the positions and the effective charges of the various cations and anions in the diopside unit cell. The lattice contribution to the electric-field gradient and the spin-orbit coupling were included. We found that this theoretical treatment yielded excellent results for the M1 sites, correctly predicting the temperature dependencies of the quadrupole splittings for all three diopside species and the high magnitude of the asymmetry parameter. In contrast, the analyses for the M2 sites were less successful. We argue that the failure is due to a lack of correct crystallographic data concerning the coordination of Fe2+ at M2 in diopside.
机译:通过Mössbauer光谱法 在4.2–800 K的温度下对三个天然的含铁透辉石样品(以下分别标记为 Dp1,Dp2和Dp3)进行了测试。铁含量为0.01 , 0.06和0.30个原子/公式单位(apfu)。 所有这三种物质都含有一些三价态的Fe。 光谱通过Fe 2 + (M1),Fe 2 + 产生的三个 四极杆双峰的叠加来充分描述。 sup>(M2)和Fe 3 + Fe 3 + 的比例似乎随着总Fe的增加而增加。 无法推断出三价铁离子的配位,但是 观察到的Fe 3 + 双峰的线展宽表明 在M1和M2处。亚铁离子 对M1位置具有强烈的偏好。对于二茂铁透辉石 样品Dp3,在60 kOe 的应用场中记录了80 K处的光谱,以确定其符号和不对称参数 电场梯度。这些符号均为负数,并且 的不对称性较大(〜0.9),这意味着在多面体的三角压缩上叠加了一个附加的畸变 。 >两个Fe 2 + 位置的中心偏移在实验 误差范围内相等。从它们的温度变化来看,晶格温度 M 等于值 ,因此对于无反冲的 分数f 2 ,推导出在任何给定温度下。 Fe 3 + 无反冲分数f 3 更高。发现f 2 / f 3 比率 在80 K时约为0.95,并且随着 温度的升高而降低。亚铁四极杆 的温度变化表明自旋轨道耦合的重要性。它们是根据 5 D项中25个电子 的热能密度计算得出的。这些能级的能量是由完整的哈密顿晶体场的对角线确定的。对于此哈密顿量的数值表达式,使用了 点电荷法,该方法考虑了 M1和M2晶格位点的真实点对称性。 通过考虑透辉石晶胞中 各种阳离子和阴离子的位置和有效电荷。包括对电场梯度的点阵 贡献和自旋轨道 耦合。我们发现,这种理论处理方法 对M1位点产生了优异的结果,正确预测了 所有三个透辉石种的四极分裂的温度依赖性。不对称 参数的高幅度。相比之下,对M2站点的分析不那么成功 。我们认为失败是由于缺乏有关透辉石中M <2>的Fe 2 + 配位的正确 晶体学数据。

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  • 来源
    《American Mineralogist》 |2003年第7期|00001145-00001152|共8页
  • 作者单位

    Department of Subatomic and Radiation Physics, Ghent University, B-9000 Gent, Belgium;

    Department of Subatomic and Radiation Physics, Ghent University, B-9000 Gent, Belgium|Department of Geology and Soil Science, Ghent University, B-9000 Gent, Belgium;

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