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准晶中超导性的发现。

Discovery of superconductivity in quasicrystal.

机构信息

Department of Physics, Graduate School of Science, Nagoya University, Nagoya, 464-8602, Japan.

UACJ Corporation, Nagoya, 455-8670, Japan.

出版信息

Nat Commun. 2018 Jan 11;9(1):154. doi: 10.1038/s41467-017-02667-x.

Abstract

Superconductivity is ubiquitous as evidenced by the observation in many crystals including carrier-doped oxides and diamond. Amorphous solids are no exception. However, it remains to be discovered in quasicrystals, in which atoms are ordered over long distances but not in a periodically repeating arrangement. Here we report electrical resistivity, magnetization, and specific-heat measurements of Al-Zn-Mg quasicrystal, presenting convincing evidence for the emergence of bulk superconductivity at a very low transition temperature of [Formula: see text] K. We also find superconductivity in its approximant crystals, structures that are periodic, but that are very similar to quasicrystals. These observations demonstrate that the effective interaction between electrons remains attractive under variation of the atomic arrangement from periodic to quasiperiodic one. The discovery of the superconducting quasicrystal, in which the fractal geometry interplays with superconductivity, opens the door to a new type of superconductivity, fractal superconductivity.

摘要

超导性无处不在,这可以从包括载流子掺杂氧化物和金刚石在内的许多晶体的观察中得到证明。非晶态固体也不例外。然而,在准晶体中尚未发现超导性,在准晶体中,原子在长距离上有序排列,但不是周期性重复排列。在这里,我们报告了 Al-Zn-Mg 准晶体的电阻率、磁化率和比热测量结果,这为在非常低的转变温度 [Formula: see text] K 下出现体超导提供了令人信服的证据。我们还在其类似物晶体中发现了超导性,这些类似物晶体的结构是周期性的,但与准晶体非常相似。这些观察结果表明,在原子排列从周期性变为准周期性时,电子之间的有效相互作用仍然具有吸引力。超导准晶体的发现,其中分形几何与超导性相互作用,为一种新型超导性——分形超导性开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b5d/5765158/a8b3a00e7029/41467_2017_2667_Fig3_HTML.jpg

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