Nix Zachary, Zhao Jiyong, Alp Esen E, Xiao Yuming, Zhang Dongzhou, Cao Guang-Han, Vohra Yogesh K, Bi Wenli
Department of Physics, University of Alabama at Birmingham, Birmingham, AL 35294, United States of America.
Advanced Photon Source, Argonne National Laboratory, Argonne, IL 60439, United States of America.
J Phys Condens Matter. 2022 Aug 4;34(41). doi: 10.1088/1361-648X/ac84bb.
Eu(FeRu)Asis an intriguing system with unusual coexistence of superconductivity and ferromagnetism, providing a unique platform to study the nature of such coexistence. To establish a magnetic phase diagram, time-domain synchrotron Mössbauer experiments inEu have been performed on a single crystalline Eu(FeRu)Assample under hydrostatic pressures and at low temperatures. Upon compression the magnetic ordering temperature increases sharply from 20 K at ambient pressure, reaching ∼49 K at 10.1 GPa. With further compression, the magnetic order is suppressed and eventually collapses. Isomer shift values from Mössbauer measurements and x-ray absorption spectroscopy data at Euedge show that pressure drives Eu ions to a homogeneous intermediate valence state with mean valence of ∼2.4 at 27.4 GPa, possibly responsible for the suppression of magnetism. Synchrotron powder x-ray diffraction experiment reveals a tetragonal to collapsed-tetragonal structural transition around 5 GPa, a lower transition pressure than in the parent compound. These results provide guidance to further work investigating the interplay of superconductivity and magnetism.
铕铁钌砷化物是一个有趣的体系,具有超导性和铁磁性的异常共存现象,为研究这种共存的本质提供了一个独特的平台。为了建立磁相图,在静水压力和低温下,对单晶铕铁钌砷化物样品进行了铕的时域同步辐射穆斯堡尔实验。压缩时,磁有序温度从常压下的20K急剧升高,在10.1GPa时达到约49K。进一步压缩时,磁有序被抑制并最终消失。穆斯堡尔测量和铕边X射线吸收光谱数据的同质异能位移值表明,压力驱使铕离子进入平均价态约为2.4的均匀中间价态,这可能是导致磁性被抑制的原因。同步辐射粉末X射线衍射实验揭示了在约5GPa时发生四方相向塌缩四方相的结构转变,其转变压力低于母体化合物。这些结果为进一步研究超导性和磁性之间的相互作用提供了指导。