论文标题

Crystallyide lafesio $ _ {1-δ} $的超导率与挤压Fesi层

Superconductivity in the crystallogenide LaFeSiO$_{1-δ}$ with squeezed FeSi layers

论文作者

Hansen, M. F., Vaney, J. -B., Lepoittevin, C., Bernardini, F., Gaudin, E., Nassif, V., Méasson, M. -A., Sulpice, A., Mayaffre, H., Julien, M. -H., Tencé, S., Cano, A., Toulemonde, P.

论文摘要

Pnictogens和Chalcogens都是可行的阴离子,用于促进基于Fe的高导率和相关家族的激烈研究活动,在Fe-Anion高度和超导临界温度$ T_C $之间建立了系统的相关性,最佳的Fe-Anion高度为$ \ sim $ \ sim $ 1.38。在这里,我们报告了一种新颖的化合物Lafesio $ _ {1-δ} $的超导性发现,其中包含了Crystallogen元素,SI和挑战上述图片:考虑到强烈挤压的Fe-Si高度为0.94Å,是0.94Å,是$ T_ {C} $ t_ {C} $ = 10 k的超导过渡,是$ T_ {C} $ = 10 k均为较高的高度。在正常状态下,电阻率显示出非纤维流动性行为,而NMR实验证明了弱反铁磁波动。 According to first-principles calculations, the Fermi surface of this material is dominated by hole pockets without nesting properties, which explains the strongly suppressed tendency towards magnetic order and suggests that the emergence of superconductivity materializes in a distinct set-up, as compared to the standard $s_\pm$- and $d$-wave electron-pocket-based situations.这些特性及其简单实施的合成使Lafesio $ _ {1-δ} $成为研究结构,电子相关性和超导性之间相互作用的特别有希望的平台。

Pnictogens and chalcogens are both viable anions for promoting Fe-based superconductivity and intense research activity in the related families has established systematic correlation between the Fe-anion height and the superconducting critical temperature $T_c$, with an optimum Fe-anion height of $\sim$ 1.38 Å. Here, we report the discovery of superconductivity in a novel compound LaFeSiO$_{1-δ}$ that incorporates a crystallogen element, Si, and challenges the above picture: considering the strongly squeezed Fe-Si height of 0.94 Å, the superconducting transition at $T_{c}$ = 10 K is unusually high. In the normal state, the resistivity displays non-Fermi-liquid behavior while NMR experiments evidence weak antiferromagnetic fluctuations. According to first-principles calculations, the Fermi surface of this material is dominated by hole pockets without nesting properties, which explains the strongly suppressed tendency towards magnetic order and suggests that the emergence of superconductivity materializes in a distinct set-up, as compared to the standard $s_\pm$- and $d$-wave electron-pocket-based situations. These properties and its simple-to-implement synthesis make LaFeSiO$_{1-δ}$ a particularly promising platform to study the interplay between structure, electron correlations and superconductivity.

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