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样品尺寸与合作现象之间的普遍关系:利用电子自旋共振观察到的分形维数对高铜酸盐电子性质的影响。

The universal relationship between sample dimensions and cooperative phenomena: effects of fractal dimension on the electronic properties of high- cuprate observed using electron spin resonance.

作者信息

Naito Toshio, Fukuda Yoshiaki

机构信息

Graduate School of Science and Engineering, Ehime University, Matsuyama 790-8577, Japan.

Advanced Research Support Center (ADRES), Ehime University, Matsuyama 790-8577, Japan.

出版信息

Phys Chem Chem Phys. 2022 Feb 16;24(7):4147-4156. doi: 10.1039/d1cp04709d.

DOI:10.1039/d1cp04709d
PMID:35014662
Abstract

As demonstrated by the unique electronic properties of nanostructured materials, which are qualitatively different from the bulk properties of the same materials, there should be a general relationship between the dimensions of the sample structures and the physical/chemical properties. However, it is demanding to examine this intriguing problem experimentally, because one cannot prepare a series of samples based on the same material with systematically varying and noninteger dimensions. This problem is solved by considering the fractal dimensions of samples. The electronic structures of a series of powder samples of the high- superconductor YBaCuO with the fractal dimensions () of 2.5-3.0 were investigated using the electron spin resonance (ESR) spectra at 293 K, to determine a general and quantitative relationship between the electronic properties and fractal dimensions of the samples. The observed -dependences of ESR parameters, such as -values and linewidths, were quantitatively consistent with those of the critical temperatures, critical current densities, and lower critical magnetic fields, all of which exhibited anomalies at ∼ 2.9. Considering the geometrical features of the fractal models, a hypothesis for explaining the observed -dependences of the cooperative phenomena has been proposed, suggesting a universal structural instability at particular fractal dimensions, which affects all the physical and chemical properties of the samples.

摘要

正如纳米结构材料独特的电子特性所表明的那样,其与相同材料的体相特性在性质上有所不同,样品结构的尺寸与物理/化学性质之间应该存在一般关系。然而,通过实验研究这个有趣的问题具有挑战性,因为无法基于相同材料制备一系列具有系统变化的非整数尺寸的样品。通过考虑样品的分形维数解决了这个问题。在293 K下使用电子自旋共振(ESR)光谱研究了一系列分形维数()为2.5 - 3.0的高温超导体YBaCuO粉末样品的电子结构,以确定样品的电子性质与分形维数之间的一般定量关系。观察到的ESR参数(如值和线宽)对的依赖性与临界温度、临界电流密度和下临界磁场的依赖性在定量上是一致的,所有这些在约2.9时都表现出异常。考虑到分形模型的几何特征,提出了一个解释观察到的合作现象对依赖性的假设,表明在特定分形维数下存在普遍的结构不稳定性,这会影响样品的所有物理和化学性质。

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