Fe<sup>2+</sup>强度张量与电场梯度张量的组成依赖性<i> & > & > / & >

IF 0.9 4区 地球科学 Q4 MINERALOGY Journal of Mineralogical and Petrological Sciences Pub Date : 2023-01-01 DOI:10.2465/jmps.221015
Keiji SHINODA, Keita ONOUE, Yasuhiro KOBAYASHI
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引用次数: 0

摘要

采用Mössbauer单晶光谱法测定了两种具有正交体系的顽辉石(En)中M2位的Fe2+双重态强度张量和M2位的Fe2+电场梯度张量,考察了硅铁石(Fs)组分对顽辉石强度张量的依赖关系。在En65.5Fs31.7Wo2.7-enstatite和En90.7Fs8.7Wo0.6-enstatite中M2位点上Fe2+孪晶的强度张量分量分别为IXX = 0.577(6), IYY = 0.454(6), IZZ = 0.470(12), 0.616(2), 0.458(4), 0.426(6)。因此,这三个分量对Fs分量的含量有较弱的依赖性。由空间群Pbca pyroxene结构中占据一般位置的Mössbauer核引起的强度张量分量IXY、IYZ和IXZ,由结构部位的等效Mössbauer核的对称求和得到IXY = IYZ = IXZ = 0。采用IXY = IYZ = IXZ = 0约束确定IXX、IYY、IZZ三个分量。在没有任何约束(IXY≠IYZ≠IXZ≠0)的情况下得到的Mössbauer核在一般位置上的强度张量与应用对称约束(IXY = IYZ = IXZ = 0)得到的强度张量是一致的,这表明Mössbauer核在一般位置上的强度张量可以用对称约束进行简化。
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Compositional dependence of intensity tensor and electric field gradient tensor for Fe<sup>2+</sup> at <i>M</i>2 sites of enstatites by single crystal Mössbauer spectroscopy
The intensity tensor for Fe2+ doublets at the M2 sites and electric field gradient tensor for Fe2+ at the M2 sites in two enstatites (En) with the orthorhombic system were determined by single crystal Mössbauer spectroscopy to examine the ferrosilite (Fs) component dependence of the intensity tensor of enstatite. The components of the intensity tensor for Fe2+ doublets at the M2 sites in the En65.5Fs31.7Wo2.7-enstatite and En90.7Fs8.7Wo0.6-enstatite are IXX = 0.577(6), IYY = 0.454(6), and IZZ = 0.470(12), and 0.616(2), 0.458(4), and 0.426(6), respectively. Thus, those three components have a weak dependence on the contents of Fs component. The components, IXY, IYZ, and IXZ, of the intensity tensor due to Mössbauer nuclei that occupy general positions in the space group Pbca pyroxene structure are derived as IXY = IYZ = IXZ = 0 by the symmetric summation of equivalent Mössbauer nuclei in the structural site. Three components, IXX, IYY, and IZZ, were determined by applying constraint of IXY = IYZ = IXZ = 0. The intensity tensors by Mössbauer nuclei at general positions obtained without any constraints (IXY ≠ IYZ ≠ IXZ ≠ 0) are consistent with those derived by applying the symmetrical constraint (IXY = IYZ = IXZ = 0). This indicates that the intensity tensor due to Mössbauer nuclei that occupy general positions can be simplified by the symmetrical constraint.
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来源期刊
CiteScore
1.80
自引率
14.30%
发文量
5
审稿时长
>12 weeks
期刊介绍: The Journal of Mineralogical and Petrological Sciences (JMPS) publishes original articles, reviews and letters in the fields of mineralogy, petrology, economic geology, geochemistry, planetary materials science, and related scientific fields. As an international journal, we aim to provide worldwide diffusion for the results of research in Japan, as well as to serve as a medium with high impact factor for the global scientific communication Given the remarkable rate at which publications have been expanding to include several fields, including planetary and earth sciences, materials science, and instrumental analysis technology, the journal aims to encourage and develop a variety of such new interdisciplinary scientific fields, to encourage the wide scope of such new fields to bloom in the future, and to contribute to the rapidly growing international scientific community. To cope with this emerging scientific environment, in April 2000 the journal''s two parent societies, MSJ* (The Mineralogical Society of Japan) and JAMPEG* (The Japanese Association of Mineralogists, Petrologists and Economic Geologists), combined their respective journals (the Mineralogical Journal and the Journal of Mineralogy, Petrology and Economic Geology). The result of this merger was the Journal of Mineralogical and Petrological Sciences, which has a greatly expanded and enriched scope compared to its predecessors.
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