Mydeen K, Jesche A, Meier-Kirchner K, Schwarz U, Geibel C, Rosner H, Nicklas M
Max-Planck Institute for Chemical Physics of Solids, Nöthnitzer Straße 40, 01187 Dresden.
Experimental Physics VI, Center for Electronic Correlations and Magnetism, Institute of Physics, University of Augsburg, 86135 Augsburg, Germany.
Phys Rev Lett. 2020 Nov 13;125(20):207001. doi: 10.1103/PhysRevLett.125.207001.
In the iron-pnictide material CeFeAsO not only the Fe moments, but also the local 4f moments of the Ce order antiferromagnetically at low temperatures. We elucidate on the peculiar role of the Ce on the emergence of superconductivity. While application of pressure suppresses the iron SDW ordering temperature monotonously up to 4 GPa, the Ce-4f magnetism is stabilized until both types of magnetic orders disappear abruptly and a narrow SC dome develops. With further increasing pressure characteristics of a Kondo-lattice system become more and more apparent in the electrical resistivity. This suggests a connection of the emergence of superconductivity with the extinction of the magnetic order and the onset of Kondo screening of the Ce-4f moments.
在铁基氮化物材料CeFeAsO中,不仅Fe磁矩,而且Ce的局域4f磁矩在低温下都呈反铁磁有序排列。我们阐明了Ce在超导出现过程中所起的特殊作用。施加压力时,铁自旋密度波(SDW)有序温度单调下降,直至4吉帕(GPa),而Ce-4f磁性一直保持稳定,直到两种磁有序突然消失,一个窄超导穹顶出现。随着压力进一步增加,近藤晶格系统的特征在电阻率中变得越来越明显。这表明超导的出现与磁有序的消失以及Ce-4f磁矩的近藤屏蔽的开始有关。