X-ray fluorescence holography under high-pressure conditions.

IF 3 3区 物理与天体物理
Journal of Synchrotron Radiation Pub Date : 2025-09-01 Epub Date: 2025-07-18 DOI:10.1107/S1600577525005284
Xinhui Zhan, Naoki Ishimatsu, Koji Kimura, Naohisa Happo, Halubai Sekhar, Tomoko Sato, Nobuo Nakajima, Naomi Kawamura, Kotaro Higashi, Oki Sekizawa, Hirokazu Kadobayashi, Ritsuko Eguchi, Yoshihiro Kubozono, Hiroo Tajiri, Shinya Hosokawa, Tomohiro Matsushita, Toru Shinmei, Tetsuo Irifune, Koichi Hayashi
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引用次数: 0

Abstract

This study reports the first application of X-ray fluorescence holography (XFH) under high-pressure conditions. We integrated XFH with a diamond anvil cell to investigate the local structure around Sr atoms in single-crystal SrTiO3 under high pressure. By utilizing nano-polycrystalline diamond anvils and a yttrium filter, we effectively eliminated significant background noise from both the anvils and the gasket. This optimized experimental configuration enabled the measurement of Sr Kα holograms of the SrTiO3 sample at pressures up to 13.3 GPa. The variation of lattice constants with pressure was calculated by the shifts of Kossel lines, and real-space images of the atomic structures were reconstructed from the Sr Kα holograms at different pressures. This work successfully demonstrates the feasibility of employing XFH under high-pressure conditions as a novel method for visualizing pressure-induced changes in the three-dimensional local structure around the specified element.

高压条件下的x射线荧光全息术。
本文报道了高压条件下x射线荧光全息术(XFH)的首次应用。我们将XFH与金刚石砧细胞相结合,研究了高压下单晶SrTiO3中Sr原子周围的局部结构。通过利用纳米多晶金刚石砧和钇过滤器,我们有效地消除了来自砧和垫片的显著背景噪声。这种优化的实验结构可以在高达13.3 GPa的压力下测量SrTiO3样品的Sr Kα全息图。利用科塞尔线的位移计算了晶格常数随压力的变化,并从不同压力下的Sr Kα全息图重建了原子结构的实空间图像。这项工作成功地证明了在高压条件下使用XFH作为一种新的方法来可视化指定元件周围三维局部结构的压力诱导变化的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Synchrotron Radiation
Journal of Synchrotron Radiation INSTRUMENTS & INSTRUMENTATIONOPTICS&-OPTICS
CiteScore
5.60
自引率
12.00%
发文量
289
审稿时长
1 months
期刊介绍: Synchrotron radiation research is rapidly expanding with many new sources of radiation being created globally. Synchrotron radiation plays a leading role in pure science and in emerging technologies. The Journal of Synchrotron Radiation provides comprehensive coverage of the entire field of synchrotron radiation and free-electron laser research including instrumentation, theory, computing and scientific applications in areas such as biology, nanoscience and materials science. Rapid publication ensures an up-to-date information resource for scientists and engineers in the field.
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