凝聚态物理
反铁磁性
近藤效应
铁磁性
近藤绝缘体
磁性
物理
电子顺磁共振
强相关材料
量子临界点
电子
材料科学
核磁共振
量子相变
量子力学
相变
作者
C. Krellner,Tobias Förster,H. S. Jeevan,C. Geibel,J. Sichelschmidt
标识
DOI:10.1103/physrevlett.100.066401
摘要
Electron spin resonance (ESR) measurements of the ferromagnetic (FM) Kondo lattice system CeRuPO show a well defined ESR signal which is related to the Ce3+ magnetism. In contrast, no ESR could be observed in the antiferromagnetic (AFM) homologue CeOsPO. Additionally, we detect an ESR signal in ferromagnetic YbRh while it was absent in a number of Ce or Yb intermetallic compounds with dominant AFM exchange. Thus, the observation of an ESR signal in a Kondo lattice is neither specific to Yb nor to the proximity to a quantum critical point, but seems to be connected to the presence of FM fluctuations. These conclusions not only provide a basic concept to understand the ESR in Kondo lattice systems even well below the Kondo temperature (as observed in YbRh2Si2) but point out ESR as a prime method to investigate directly the spin dynamics of the Kondo ion.
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