High-pressure and high-temperature neutron-diffraction experiments using Kawai-type multi-anvil assemblies

IF 1.2 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY High Pressure Research Pub Date : 2021-01-02 DOI:10.1080/08957959.2020.1867723
A. Sano‐Furukawa, S. Kakizawa, Chikara Shito, T. Hattori, S. Machida, J. Abe, K. Funakoshi, H. Kagi
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引用次数: 1

Abstract

ABSTRACT We applied Kawai-type multi-anvil assemblies (MA6-8) for time-of-flight neutron-diffraction experiments to achieve high-pressures and high-temperatures simultaneously. To achieve sufficient signal intensities, the angular access to the sample was enlarged using slits and tapers on the first-stage anvils. Using SiC-binder sintered diamond for the second-stage anvils that transmits neutrons, sufficient signal intensities were achieved at a high-pressure of ∼23.1 GPa. A high-temperature experiment was also conducted at 16.2 GPa and 973 K, validating the use of tungsten carbide for the second-stage anvils. The present study reveals the capability of the MA6-8 cells in neutron-diffraction experiments to attain pressures and temperatures beyond the limits of the conventional MA6-6 cells used in the high-pressure neutron diffractometer PLANET at the MLF, J-PARC.
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Kawai型多砧组件高压高温中子衍射实验
摘要我们将Kawai型多砧组件(MA6-8)应用于飞行时间中子衍射实验,以同时实现高压和高温。为了获得足够的信号强度,使用第一级砧上的狭缝和锥形扩大了对样品的角度接近。使用SiC粘结剂烧结金刚石作为传输中子的第二级砧,在~23.1的高压下获得了足够的信号强度 GPa。在16.2时也进行了高温实验 GPa和973 K、 验证了碳化钨用于第二级砧的使用。本研究揭示了MA6-8电池在中子衍射实验中获得超过MLF、J-PARC高压中子衍射仪PLANET中使用的传统MA6-6电池极限的压力和温度的能力。
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来源期刊
High Pressure Research
High Pressure Research 物理-物理:综合
CiteScore
3.80
自引率
5.00%
发文量
15
审稿时长
2 months
期刊介绍: High Pressure Research is the leading journal for research in high pressure science and technology. The journal publishes original full-length papers and short research reports of new developments, as well as timely review articles. It provides an important forum for the presentation of experimental and theoretical advances in high pressure science in subjects such as: condensed matter physics and chemistry geophysics and planetary physics synthesis of new materials chemical kinetics under high pressure industrial applications shockwaves in condensed matter instrumentation and techniques the application of pressure to food / biomaterials Theoretical papers of exceptionally high quality are also accepted.
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