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SciPhon: a data analysis software for nuclear resonant inelastic X-ray scattering with applications to Fe Kr Sn Eu and Dy

机译:SciPhon:用于核共振非弹性X射线散射的数据分析软件应用于FeKrSnEu和Dy

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摘要

The synchrotron radiation technique of nuclear resonant inelastic X-ray scattering (NRIXS), also known as nuclear resonance vibrational spectroscopy or nuclear inelastic scattering, provides a wealth of information on the vibrational properties of solids. It has found applications in studies of lattice dynamics and elasticity, superconductivity, heme biochemistry, seismology, isotope geochemistry and many other fields. It involves probing the vibrational modes of solids by using the nuclear resonance of Mössbauer isotopes such as 57Fe, 83Kr, 119Sn, 151Eu and 161Dy. After data reduction, it provides the partial phonon density of states of the Mössbauer isotope that is investigated, as well as many other derived quantities such as the mean force constant of the chemical bonds and the Debye velocity. The data reduction is, however, not straightforward and involves removal of the elastic peak, normalization and Fourier–Log transformation. Furthermore, some of the quantities derived are highly sensitive to details in the baseline correction. A software package and several novel procedures to streamline and hopefully improve the reduction of the NRIXS data generated at sector 3ID of the Advanced Photon Source have been developed. The graphical user interface software is named SciPhon and runs as a Mathematica package. It is easily portable to other platforms and can be easily adapted for reducing data generated at other beamlines. Several tests and comparisons are presented that demonstrate the usefulness of this software, whose results have already been used in several publications. Here, the SciPhon software is used to reduce Kr, Sn, Eu and Dy NRIXS data, and potential implications for interpreting natural isotopic variations in those systems are discussed.
机译:核共振非弹性X射线散射(NRIXS)的同步辐射技术,也称为核共振振动光谱法或核非弹性散射,提供了有关固体振动特性的大量信息。它已在晶格动力学和弹性,超导性,血红素生物化学,地震学,同位素地球化学等许多领域的研究中找到了应用。它涉及利用Mössbauer同位素的核共振来探测固体的振动模式,这些同位素包括 57 Fe, 83 Kr, 119 Sn, 151 Eu和 161 Dy。数据简化后,它提供了所研究的莫斯鲍尔同位素的部分声子密度,以及许多其他推导量,例如化学键的平均力常数和德拜速度。但是,数据缩减不是简单明了的,涉及去除弹性峰,标准化和傅里叶对数转换。此外,得出的某些数量对基线校正中的细节高度敏感。已经开发出软件包和一些新颖的程序来简化并希望改善在高级光子源的扇区3ID处生成的NRIXS数据的减少。图形用户界面软件名为SciPhon,并作为Mathematica软件包运行。它很容易移植到其他平台,并且可以轻松地用于减少在其他光束线上生成的数据。进行了几次测试和比较,证明该软件的有效性,其结果已经在多个出版物中使用。在这里,SciPhon软件用于减少Kr,Sn,Eu和Dy的NRIXS数据,并讨论了解释那些系统中自然同位素变化的潜在含义。

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