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实验性X射线电荷密度研究——超导性的合适探针?以MgB为例的案例研究

Experimental X-ray Charge-Density Studies─A Suitable Probe for Superconductivity? A Case Study on MgB.

作者信息

Langmann Jan, Kepenci Hasan, Eickerling Georg, Batke Kilian, Jesche Anton, Xu Mingyu, Canfield Paul, Scherer Wolfgang

机构信息

CPM, Institut für Physik, Universität Augsburg, 86159Augsburg, Germany.

Experimentalphysik VI, Zentrum für Elektronische Korrelation und Magnetismus, Institut für Physik, Universität Augsburg, Augsburg86159, Germany.

出版信息

J Phys Chem A. 2022 Nov 17;126(45):8494-8507. doi: 10.1021/acs.jpca.2c05925. Epub 2022 Nov 5.

DOI:10.1021/acs.jpca.2c05925
PMID:36334028
Abstract

Case studies of 1T-TiSe and YBaCuO have demonstrated that X-ray diffraction (XRD) studies can be used to trace even subtle structural phase transitions which are inherently connected with the onset of superconductivity in these benchmark systems. However, the utility of XRD in the investigation of superconductors like MgB lacking an additional symmetry-breaking structural phase transition is not immediately evident. Nevertheless, high-resolution powder XRD experiments on MgB in combination with maximum entropy method analyses hinted at differences between the electron density distributions at room temperature and 15 K, that is, below the of approx. 39 K. The high-resolution single-crystal XRD experiments in combination with multipolar refinements presented here can reproduce these results but show that the observed temperature-dependent density changes are almost entirely due to a decrease of atomic displacement parameters as a natural consequence of a reduced thermal vibration amplitude with decreasing temperature. Our investigations also shed new light on the presence or absence of magnesium vacancies in MgB samples─a defect type claimed to control the superconducting properties of the compound. We propose that previous reports on the tendency of MgB to form non-stoichiometric MgB phases (1 - ∼ 0.95) during high-temperature (HT) synthesis might result from the interpretation of XRD data of insufficient resolution and/or usage of inflexible refinement models. Indeed, advanced refinements based on an Extended Hansen-Coppens multipolar model and high-resolution X-ray data, which consider explicitly the contraction of core and valence shells of the magnesium cations, do not provide any significant evidence for the formation of non-stoichiometric MgB phases during HT synthesis.

摘要

对1T-TiSe₂和YBa₂Cu₃O₇的案例研究表明,X射线衍射(XRD)研究可用于追踪即使是与这些基准体系中超导性起始内在相关的细微结构相变。然而,XRD在研究像MgB₂这样缺乏额外对称性破缺结构相变的超导体时的效用并非立竿见影。尽管如此,对MgB₂进行的高分辨率粉末XRD实验结合最大熵方法分析暗示了室温与15 K(即低于约39 K的超导转变温度)下电子密度分布的差异。本文所展示的结合多极精修的高分辨率单晶XRD实验能够重现这些结果,但表明观察到的与温度相关的密度变化几乎完全是由于原子位移参数的降低,这是温度降低导致热振动幅度减小的自然结果。我们的研究还为MgB₂样品中镁空位的存在与否提供了新的线索——一种据称控制该化合物超导性能的缺陷类型。我们认为,先前关于MgB₂在高温(HT)合成过程中形成非化学计量比MgB₂相(1 - x ∼ 0.95)趋势的报道,可能是由于对分辨率不足的XRD数据的解释和/或使用了不灵活的精修模型。事实上,基于扩展的汉森 - 科彭斯多极模型和高分辨率X射线数据进行的高级精修,明确考虑了镁阳离子的核心和价壳层的收缩,并未提供任何高温合成过程中形成非化学计量比MgB₂相的重要证据。

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