Kawaguchi-Imada Saori, Sinmyo Ryosuke, Ohta Kenji, Kawaguchi Shogo, Kobayashi Toshiyuki
Japan Synchrotron Radiation Research Institute, 1-1-1 Kouto, Sayo-cho, Sayo-gun, Hyogo 679-5198, Japan.
Department of Physics, School of Science and Technology, Meiji University, 1-1-1 Higashi Mita, Tama-ku, Kawasaki, Kanagawa 214-8571, Japan.
J Synchrotron Radiat. 2024 Mar 1;31(Pt 2):343-354. doi: 10.1107/S1600577523010974. Epub 2024 Feb 19.
Recently, there has been a high demand for elucidating kinetics and visualizing reaction processes under extreme dynamic conditions, such as chemical reactions under meteorite impact conditions, structural changes under nonequilibrium conditions, and in situ observations of dynamic changes. To accelerate material science studies and Earth science fields under dynamic conditions, a submillisecond in situ X-ray diffraction measurement system has been developed using a diamond anvil cell to observe reaction processes under rapidly changing pressure and temperature conditions replicating extreme dynamic conditions. The development and measurements were performed at the high-pressure beamline BL10XU/SPring-8 by synchronizing a high-speed hybrid pixel array detector, laser heating and temperature measurement system, and gas-pressure control system that enables remote and rapid pressure changes using the diamond anvil cell. The synchronized system enabled momentary heating and rapid cooling experiments up to 5000 K via laser heating as well as the visualization of structural changes in high-pressure samples under extreme dynamic conditions during high-speed pressure changes.
最近,对于阐明极端动态条件下的动力学并可视化反应过程的需求很高,例如陨石撞击条件下的化学反应、非平衡条件下的结构变化以及动态变化的原位观测。为了加速动态条件下的材料科学研究和地球科学领域的发展,已经开发了一种亚毫秒级原位X射线衍射测量系统,该系统使用金刚石对顶砧来观察在快速变化的压力和温度条件下复制极端动态条件的反应过程。该系统的开发和测量是在高压光束线BL10XU/SPring-8上进行的,通过同步高速混合像素阵列探测器、激光加热和温度测量系统以及使用金刚石对顶砧实现远程和快速压力变化的气压控制系统。该同步系统能够通过激光加热进行高达5000 K的瞬间加热和快速冷却实验,以及在高速压力变化期间可视化极端动态条件下高压样品的结构变化。