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一种用于近90°X射线光谱学的便携式同轴激光加热系统:应用于铁方镁石和硅化铁。

A portable on-axis laser-heating system for near-90° X-ray spectroscopy: application to ferropericlase and iron silicide.

作者信息

Spiekermann Georg, Kupenko Ilya, Petitgirard Sylvain, Harder Manuel, Nyrow Alexander, Weis Christopher, Albers Christian, Biedermann Nicole, Libon Lélia, Sahle Christoph J, Cerantola Valerio, Glazyrin Konstantin, Konôpková Zuzana, Sinmyo Ryosuke, Morgenroth Wolfgang, Sergueev Ilya, Yavaş Hasan, Dubrovinsky Leonid, Tolan Metin, Sternemann Christian, Wilke Max

机构信息

Insitute of Geosciences, University of Potsdam, Karl-Liebknecht-Straße 24-25, 14476 Potsdam, Germany.

Institut für Mineralogie, Universität Münster, 48149 Münster, Germany.

出版信息

J Synchrotron Radiat. 2020 Mar 1;27(Pt 2):414-424. doi: 10.1107/S1600577519017041. Epub 2020 Feb 13.

Abstract

A portable IR fiber laser-heating system, optimized for X-ray emission spectroscopy (XES) and nuclear inelastic scattering (NIS) spectroscopy with signal collection through the radial opening of diamond anvil cells near 90°with respect to the incident X-ray beam, is presented. The system offers double-sided on-axis heating by a single laser source and zero attenuation of incoming X-rays other than by the high-pressure environment. A description of the system, which has been tested for pressures above 100 GPa and temperatures up to 3000 K, is given. The XES spectra of laser-heated MgFeO demonstrate the potential to map the iron spin state in the pressure-temperature range of the Earth's lower mantle, and the NIS spectra of laser-heated FeSi give access to the sound velocity of this candidate of a phase inside the Earth's core. This portable system represents one of the few bridges across the gap between laser heating and high-resolution X-ray spectroscopies with signal collection near 90°.

摘要

本文介绍了一种便携式红外光纤激光加热系统,该系统针对X射线发射光谱(XES)和核非弹性散射(NIS)光谱进行了优化,通过相对于入射X射线束接近90°的金刚石对顶砧径向开口收集信号。该系统由单个激光源提供双面同轴加热,除了高压环境外,入射X射线无衰减。文中给出了该系统的描述,该系统已在压力高于100 GPa和温度高达3000 K的条件下进行了测试。激光加热的MgFeO的XES光谱展示了在地球下地幔的压力-温度范围内绘制铁自旋态的潜力,激光加热的FeSi的NIS光谱则可获取地核内该相候选体的声速。这个便携式系统是少数能跨越激光加热与近90°信号收集的高分辨率X射线光谱之间差距的桥梁之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d98/7064108/5b3529447b06/s-27-00414-fig1.jpg

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