论文标题

X射线电荷密度研究$ - $适合超导性的探针?

X-ray charge-density studies $-$ a suitable probe for superconductivity?

论文作者

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

论文摘要

$ 1T $ -TISE $ _2 $和YBA $ _2 $ cu $ _3 $ _3 $ o $ _ {7-δ} $的案例研究证明,X射线衍射(XRD)研究可用于追踪这些基础标记系统中超导电性的固有连接的均匀结构相变。然而,XRD在调查MGB $ _2 $等超导体中缺乏额外对称性结构相变的效用并不明显。即使在MGB $ _2 $上的高分辨率粉末XRD实验与最大熵方法(MEM)分析暗示了室温和15K的电子密度分布之间的差异,即低于$ T_C $的$ T_C $。 39k。高分辨率的单晶XRD实验与此处介绍的多极改进结合使用可以再现这些结果,但是表明观察到的温度依赖性密度变化几乎完全是由于原子位移参数的降低,这是由于降低的热振动幅度随着温度而降低的原子位移参数。我们的调查还为MGB $ _2 $样品中的镁空缺的存在或不存在新的启示提供了新的启示。 We propose that previous reports on the tendency of MgB$_2$ to form non-stoichiometric Mg$_{1-x}$B$_2$ phases ($1 - x \sim$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.

Case studies of $1T$-TiSe$_2$ and YBa$_2$Cu$_3$O$_{7-δ}$ 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. Yet, the utility of XRD in the investigation of superconductors like MgB$_2$ lacking an additional symmetry-breaking structural phase transition is not immediately evident. Even though, high-resolution powder XRD experiments on MgB$_2$ in combination with maximum entropy method (MEM) analyses hinted at differences between the electron density distributions at room temperature and 15K, i.e. below the $T_c$ of approx. 39K. 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 reduced thermal vibration amplitude with decreasing temperature. Our investigations also shed new light on the presence or absence of magnesium vacancies in MgB$_2$ samples $-$ a defect type claimed to control the superconducting properties of the compound. We propose that previous reports on the tendency of MgB$_2$ to form non-stoichiometric Mg$_{1-x}$B$_2$ phases ($1 - x \sim$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.

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