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识别非常规高温超导体的基因。 不过需要说明的是,这里“基因”在超导领域语境下不太准确,可能原文想表达的是“识别非常规高温超导体的相关因素/特性等” ,“genes”可能是误用,如果结合超导专业知识更准确的翻译或许是“识别非常规高温超导体的相关基因(此处‘基因’为比喻,实际指关键特性等)” 。 但仅按照指令要求,就是上述译文。

Identifying the genes of unconventional high temperature superconductors.

作者信息

Hu Jiangping

机构信息

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190 China ; Collaborative Innovation Center of Quantum Matter, Beijing, 100190 China.

出版信息

Sci Bull (Beijing). 2016;61:561-569. doi: 10.1007/s11434-016-1037-7. Epub 2016 Mar 14.

Abstract

We elucidate a recently emergent framework in unifying the two families of high temperature (high [Formula: see text]) superconductors, cuprates and iron-based superconductors. The unification suggests that the latter is simply the counterpart of the former to realize robust extended s-wave pairing symmetries in a square lattice. The unification identifies that the key ingredients (gene) of high [Formula: see text] superconductors is a quasi two dimensional electronic environment in which the -orbitals of cations that participate in strong in-plane couplings to the -orbitals of anions are isolated near Fermi energy. With this gene, the superexchange magnetic interactions mediated by anions could maximize their contributions to superconductivity. Creating the gene requires special arrangements between local electronic structures and crystal lattice structures. The speciality explains why high [Formula: see text] superconductors are so rare. An explicit prediction is made to realize high [Formula: see text] superconductivity in Co/Ni-based materials with a quasi two dimensional hexagonal lattice structure formed by trigonal bipyramidal complexes.

摘要

我们阐明了一个最近出现的框架,用于统一高温(高[公式:见正文])超导体的两个家族,即铜酸盐和铁基超导体。这种统一表明,后者只是前者的对应物,以在正方形晶格中实现稳健的扩展s波配对对称性。这种统一确定了高[公式:见正文]超导体的关键要素(基因)是一种准二维电子环境,其中参与与阴离子的-轨道进行强面内耦合的阳离子的-轨道在费米能量附近是孤立的。有了这个基因,由阴离子介导的超交换磁相互作用可以使其对超导性的贡献最大化。创造这个基因需要局部电子结构和晶格结构之间的特殊排列。这种特殊性解释了为什么高[公式:见正文]超导体如此罕见。我们做出了一个明确的预测,即在由三角双锥配合物形成的具有准二维六边形晶格结构的钴/镍基材料中实现高[公式:见正文]超导性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff9d/4819800/201c0bf7d433/11434_2016_1037_Fig1_HTML.jpg

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