首页> 外文期刊>Physics of the Earth and Planetary Interiors: A Journal Devoted to Obsevational and Experimerntal Studies of the Chemistry and Physics of Planetary Interiors and Their Theoretical Interpretation >Development of in situ Brillouin spectroscopy at high pressure and high temperature with synchrotron radiation and infrared laser heating system: Application to the Earth's deep interior
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Development of in situ Brillouin spectroscopy at high pressure and high temperature with synchrotron radiation and infrared laser heating system: Application to the Earth's deep interior

机译:利用同步辐射和红外激光加热系统在高压和高温下进行原位布里渊光谱的开发:在地球深处的应用

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摘要

Seismic wave velocity profiles in the Earth provide one of the strongest constraints on structure, mineralogy and elastic properties of the Earth's deep interior. Accurate sound velocity data of deep Earth materials under relevant high-pressure and high-temperature conditions, therefore, are essential for interpretation of seismic data. Such information can be directly obtained from Brillouin scattering measurement. Here we describe an in situ Brillouin scattering system for measurements at high pressure and high temperature using a laser heated diamond anvil cell and synchrotron radiation for sample characterization. The system has been used with single-crystal and polycrystalline materials, and with glass and fluid phase. It provided high quality sound velocity and elastic data with X-ray diffraction data at high pressure and/or high temperature. Those combined techniques can potentially offer the essential information for resolving many remaining issues in mineral physics.
机译:地球中的地震波速度剖面是对地球深处内部的结构,矿物学和弹性性质的最强约束之一。因此,在相关的高压和高温条件下,深层地球材料的准确声速数据对于解释地震数据至关重要。这些信息可以直接从布里渊散射测量获得。在这里,我们描述了一种原位布里渊散射系统,该系统使用激光加热的金刚石砧盒和同步加速器辐射在高压和高温下进行测量,以进行样品表征。该系统已用于单晶和多晶材料,以及玻璃和液相。它在高压和/或高温下提供高质量的声速和弹性数据,以及X射线衍射数据。这些组合技术可以潜在地提供解决矿物物理中许多剩余问题的基本信息。

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