论文标题

设计的新型磁性材料:与自旋1/2的YB3+观察以及在YBXPT5P中可能的超导痕迹

A Novel Magnetic Material by Design: Observation of Yb3+ with Spin-1/2 and Possible Superconducting Trace in YbxPt5P

论文作者

Gui, Xin, Chang, Tay-Rong, Wei, Kaya, Daum, Marcus J., Graf, David E., Baumbach, Ryan. E., Mourigal, Martin, Xie, Weiwei

论文摘要

局部的F-电子富含基于稀土的金属间代理中的磁性。其中,具有较重的4D和5D过渡金属的化合物甚至更令人着迷,因为4F的杂交和巡回传导电子主要来自D轨道。在这里,我们描述了三价yb3+的观察,在低温下ybxpt5p(新的材料家族中的第一家)在低温下s = 1/2。 YBXPT5P(0.20 <x <1)阶段合成并在结构上表征。它们表现出较大的同质性宽度,YB比仅在抗Cecoin5结构中占据1A位点。此外,分析为YB0.25PT5P分析的样品的电阻率测量表明,它存在于临界过渡温度约为0.6 k的完全零抗性转变,可能的超导性。但是,在YBPT5P中未观察到零耐药性转变,而抗铁磁序列仅存在。第一原理电子结构计算证实了抗铁磁基态,并表明围绕费米水平的2D嵌套可能会产生异国情调的物理特性,例如超导性。 YBXPT5P似乎是材料中的独特情况。

The localized f-electrons enrich the magnetic properties in rare-earth-based intermetallics. Among those, compounds with heavier 4d and 5d transition metals are even more fascinating because anomalous electronic properties may be induced by the hybridization of 4f and itinerant conduction electrons primarily from the d orbitals. Here, we describe the observation of trivalent Yb3+ with S = 1/2 at low temperatures in YbxPt5P, the first of a new family of materials. YbxPt5P (0.20< x <1) phases were synthesized and structurally characterized. They exhibit a large homogeneity width with the Yb ratio exclusively occupying the 1a site in the anti-CeCoIn5 structure. Moreover, the resistivity measurement of a sample analyzed as Yb0.25Pt5P shows it to exist a complete zero-resistance transition with a critical transition temperature of ~0.6 K, possible superconductivity. However, the zero-resistivity transition was not observed in YbPt5P with antiferromagnetic ordering existing solely. First-principles electronic structure calculations substantiate the antiferromagnetic ground state and indicate that 2D nesting around the Fermi level may give rise to exotic physical properties, such as superconductivity. YbxPt5P appears to be a unique case among materials.

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