论文标题

无铁的Pnictide超导体LARU $ _2 $ p $ _2 $中的大磁力

Large magnetoresistance in the iron-free pnictide superconductor LaRu$_2$P$_2$

论文作者

Fernández-Lomana, Marta, Barrena, Víctor, Wu, Beilun, Delgado, Sara, Mompeán, Federico, García-Hernández, Mar, Suderow, Hermann, Guillamón, Isabel

论文摘要

铁pnictide超导体的磁性通常由电子 - 电子相关性主导,并且与H $^2 $的偏离或无关金属预期的饱和行为。与类似的基于Fe的Pnictide系统相反,超导体LARU $ _2 $ P $ _2 $(T $ _C $ = 4 K)显示电子电子相关性没有增强。在这里,我们报告了与h $^2 $偏离的非饱和磁场,或Laru $ _2 $ P $ _2 $中的饱和行为。我们已经成长并描述了Laru $ _2 $ p $ _2 $的高质量单晶,并在H $^{1.3} $之后测量了一种磁性,最高可达22吨。我们通过比较Laru $ _2 $ _2 $ _2 $ _2 $的频带结构与Fe -fe -fe -fe -fe -pnictide pnictide superconducductors进行了比较。 Fe和Ru的不同轨道结构导致3D费米表面,在Laru $ _2 $ _2 $ _2 $中,带宽重新归一化,其中包含在整个Brillouin区域上的大开放板。我们表明,Laru $ _2 $ p $ _2 $中的大磁磁性与具有较强的电子电子相关性的材料中获得的磁性无关,并且由于在Laru $ _2 $ P $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $的材料中兼容。

The magnetoresistance of iron pnictide superconductors is often dominated by electron-electron correlations and deviates from the H$^2$ or saturating behaviors expected for uncorrelated metals. Contrary to similar Fe-based pnictide systems, the superconductor LaRu$_2$P$_2$ (T$_c$ = 4 K) shows no enhancement of electron-electron correlations. Here we report a non-saturating magnetoresistance deviating from the H$^2$ or saturating behaviors in LaRu$_2$P$_2$. We have grown and characterized high quality single crystals of LaRu$_2$P$_2$ and measured a magnetoresistance following H$^{1.3}$ up to 22 T. We discuss our result by comparing the bandstructure of LaRu$_2$P$_2$ with Fe based pnictide superconductors. The different orbital structures of Fe and Ru leads to a 3D Fermi surface with negligible bandwidth renormalization in LaRu$_2$P$_2$, that contains a large open sheet over the whole Brillouin zone. We show that the large magnetoresistance in LaRu$_2$P$_2$ is unrelated to the one obtained in materials with strong electron-electron correlations and that it is compatible instead with conduction due to open orbits on the rather complex Fermi surface structure of LaRu$_2$P$_2$.

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