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压缩 Fe3C 的声速通过同步辐射 X 射线衍射和核共振散射测量得出。

Sound velocities of compressed Fe3C from simultaneous synchrotron X-ray diffraction and nuclear resonant scattering measurements.

机构信息

Department of Geology, University of Illinois, Urbana, IL 60801, USA.

出版信息

J Synchrotron Radiat. 2009 Nov;16(Pt 6):714-22. doi: 10.1107/S0909049509033731. Epub 2009 Sep 16.

DOI:10.1107/S0909049509033731
PMID:19844004
Abstract

The applications of nuclear resonant scattering in laser-heated diamond anvil cells have provided an important probe for the magnetic and vibrational properties of (57)Fe-bearing materials under high pressure and high temperature. Synchrotron X-ray diffraction is one of the most powerful tools for studying phase stability and equation of state over a wide range of pressure and temperature conditions. Recently an experimental capability has been developed for simultaneous nuclear resonant scattering and X-ray diffraction measurements using synchrotron radiation. Here the application of this method to determine the sound velocities of compressed Fe(3)C is shown. The X-ray diffraction measurements allow detection of microscale impurities, phase transitions and chemical reactions upon compression or heating. They also provide information on sample pressure, grain size distribution and unit cell volume. By combining the Debye velocity extracted from the nuclear resonant inelastic X-ray scattering measurements and the structure, density and elasticity data from the X-ray diffraction measurements simultaneously obtained, more accurate sound velocity data can be derived. Our results on few-crystal and powder samples indicate strong anisotropy in the sound velocities of Fe(3)C under ambient conditions.

摘要

核共振散射在激光加热金刚石压腔中的应用为(57)Fe -bearing 材料在高压高温下的磁性和振动特性提供了一个重要的探针。同步加速器 X 射线衍射是研究在很宽的压力和温度范围内的相稳定性和状态方程的最有力工具之一。最近,已经开发出了一种使用同步加速器辐射同时进行核共振散射和 X 射线衍射测量的实验能力。这里展示了该方法在确定压缩 Fe(3)C 的声速中的应用。X 射线衍射测量可以检测到压缩或加热时的微尺度杂质、相转变和化学反应。它们还提供了关于样品压力、晶粒尺寸分布和单位细胞体积的信息。通过结合从核共振非弹性 X 射线散射测量中提取的德拜速度以及同时获得的 X 射线衍射测量中的结构、密度和弹性数据,可以得出更准确的声速数据。我们对单晶和粉末样品的结果表明,在环境条件下,Fe(3)C 的声速具有很强的各向异性。

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