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Heavy fermion behavior in selected cerium-based compounds: Magnetism and superconductivity.

机译:某些铈基化合物中重铁离子的行为:磁性和超导性。

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摘要

CeRhIn5 is a member of the recently discovered series of heavy fermion superconductors CeMIn5 (M = Co, Rh, Ir). Initial investigations showed that CeRhIn5 undergoes an antiferromagnetic transition at 3.8 K, but that application of pressure induces a superconducting state with the unusually high Tc of 2.1 K. With the discovery that the other members of the CeMIn5 family were ambient pressure superconductors it became apparent that this series offered an exceptional opportunity to explore systemically the unconventional magnetic and superconducting heavy fermion ground states.; The objective of this dissertation is to explore in further detail the nature and relation of the heavy fermion magnetic and superconducting ground states in CeMIn5 with particular emphasis on the properties of antiferromagnetic CeRhIn5. Information about these systems will be extracted using two techniques: (1) measurements of the electrical resistivity of single crystals in applied magnetic fields to 18 T; and (2) measurements of inelastic neutron scattering response of powdered single crystals.; Magnetotransport studies reveal a high temperature regime characteristic of single impurity Kondo interactions and a low temperature regime characteristic of a Kondo lattice. Moreover, the anisotropic behavior of the resistivity of CeRhIn5 as well as experimental and theoretical investigations of other workers indicate that crystalline electric fields strongly influence the properties of the CeMIn5 family. To further elucidate the role of crystalline electric field effects in the CeMIn5 series we have determined the energy level splittings and wave functions of CeRhIn5 with inelastic neutron scattering. Using these results, along with estimations of the contribution due to the Kondo effect and magnetic interactions, reasonable fits are obtained to the measured magnetic susceptibility and specific heat. Moreover, we show that our proposal of the crystal field level splitting in CeRhIn5 can account for the magnitude of the ordered moment observed by neutron diffraction, while those of previous work cannot. Taken together these studies indicate that any detailed understanding of the properties of these materials must account for interactions due to the Kondo effect and magnetic interactions, as well as crystalline electric field effects.
机译:CeRhIn 5 是最近发现的一系列重费米子超导体CeMIn 5 (M = Co,Rh,Ir)的成员。初步研究表明,CeRhIn 5 在3.8 K处经历反铁磁转变,但施加压力会导致超导状态,T c 异常高约为2.1K。随着CeMIn 5 家族的其他成员是环境压力超导体的发现,很明显,该系列为系统地探索非常规的磁性和超导的重费米子基态提供了绝佳的机会。 ;本文的目的是进一步探讨CeMIn 5 中重铁磁和超导基态的性质和关系,特别着重于反铁磁CeRhIn 5 。有关这些系统的信息将使用两种技术来提取:(1)在施加18 T磁场的情况下测量单晶的电阻率; (2)测量粉末状单晶的非弹性中子散射响应。磁输运研究揭示了单一杂质近藤相互作用的高温态特征和近藤晶格的低温态特征。此外,CeRhIn 5 的电阻率各向异性行为以及其他工作人员的实验和理论研究表明,晶体电场强烈影响CeMIn 5 族的性质。为了进一步阐明晶体电场效应在CeMIn 5 系列中的作用,我们确定了具有非弹性中子散射的CeRhIn 5 的能级分裂和波函数。使用这些结果,加上对近藤效应和磁相互作用的贡献的估计,可以合理地拟合所测的磁化率和比热。而且,我们表明,我们关于CeRhIn 5 中的晶体能级分裂的建议可以解释中子衍射观察到的有序矩的大小,而先前的工作则不能。综合起来,这些研究表明,对这些材料的性能的任何详细了解都必须考虑到由于近藤效应和磁相互作用以及晶体电场效应而产生的相互作用。

著录项

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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