论文标题

深色场X射线显微镜以下液态温度:NAMNO2的情况

Dark Field X-ray Microscopy Below Liquid-Helium Temperature: The Case of NaMnO2

论文作者

Plumb, Jayden, Poudyal, Ishwor, Dally, Rebecca L., Daly, Samantha, Wilson, Stephen D., Islam, Zahir

论文摘要

暗场X射线显微镜(DFXM)是一种实验技术,用于通过使用同步加速器辐射源的硬X射线以散装方式探测其“中尺度”或“显微镜结构”的“中尺度”或“显微镜结构”。然而,在该技术的应用中,仍存在挑战,以检查量子材料中低温现象,这些量子在低温温度下表现出复杂的相变。一种这样的材料是NAMNO2,该材料在45 K处托有抗磁磁过渡,该抗铁磁性转变可与从其多数单斜相阶段到纳米级三斜晶域的局部结构过渡一致。直接观察局部异质性和NAMNO2中低温下的这种影响是理解该材料的重要步骤,并且是扩展DFXM实验设计空间的理想候选研究。本文详细介绍了一项基础高分辨率DFXM研究,直至液态温度及以下,用于探索NAMNO2中的相变。概述的实验在低温下使用此技术在低温下评估其他功能材料时进行了示意。

Dark field X-ray microscopy (DFXM) is an experimental technique employed to investigate material properties by probing their 'mesoscale,' or microscale structures, in a bulk-sensitive manner using hard X-rays at synchrotron radiation sources. However, challenges remain when it comes to applications of this technique to examine low-temperature phenomena in quantum materials, which exhibit complex phase transitions at cryogenic temperatures. One such material is NaMnO2, which hosts an antiferromagnetic transition at 45 K that is suspected to coincide with local structural transitions from its majority monoclinic phase to nanoscale triclinic domains. Direct observation of local heterogeneities and this effect at low temperatures in NaMnO2 is an important step in understanding this material, and serves as an ideal candidate study for expanding the DFXM experimental design space. This paper details a foundational high-resolution DFXM study, down to liquid-helium temperature and below, conducted to explore phase transitions in NaMnO2. The outlined experiment ushers in the evaluation of other functional materials at low temperatures using this technique.

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