凝聚态物理
准粒子
半金属
磁电阻
Weyl半金属
自旋电子学
物理
磁场
几何相位
量子
量子力学
铁磁性
带隙
超导电性
作者
Weizheng Cao,Yunlong Su,Qi Wang,Cuiying Pei,Lingling Gao,Yi Zhao,Changhua Li,Na Yu,Jinghui Wang,Zhongkai Liu,Yulin Chen,Gang Li,Jun Li,Yanpeng Qi
标识
DOI:10.1088/0256-307x/39/4/047501
摘要
Weyl semimetal (WSM) as a new type of quantum state of matter hosting low energy relativistic quasiparticles, has attracted significant attention for both scientific community and potential quantum device applications. Here, we report a comprehensive investigation of the structural, magnetic and transport properties of noncentrosymmetric RAlSi (R = Sm, Ce), which have been predicted to be new magnetic WSM candidates. Both samples exhibit non-saturated magnetoresistance (MR), with ~ 900% for SmAlSi and 80% for CeAlSi at 1.8 K, 9 T. The carrier densities of SmAlSi and CeAlSi display remarkable change around magnetic transition temperatures, signifying that the electronic states are sensitive to magnetic ordering of rare earth elements. At low temperatures, SmAlSi reveals prominent Shubnikov-de Haas (SdH) oscillations associated with the nontrivial Berry phase. High pressure experiments demonstrate that the magnetic order is robust and survival under high pressure. Our results would yield valuable insights of WSM physics and potentials in application to the next-generation spintronic devices in RAX family.
科研通智能强力驱动
Strongly Powered by AbleSci AI