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Fine tuning the heavy fermion ground state: A new handle on cerium cobalt indium.

机译:微调重金属离子的基态:铈钴铟的新处理方法。

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A Two Fluid Description of the Kondo Lattice CeCoIn5 has been extended to include additional entropy terms that were not considered in the original work by S. Nakatsuji et al. [1]. The use of a Matlab computer code was successful at iteratively solving for f, the fraction of itinerant interacting heavy quasiparticles, and showed that it converges to a temperature dependent function invariant under successive iterations. The linear specific heat coefficient, gamma, was extracted from transport consideration in conjunction with f(T) and the Kadowacki-Woods ratio to be 204mJ/mole-K2, in good agreement from heat capacity measurements of 290mJ/mole-K2 for CeCoIn 5 [32].; Antiferromagnetism has been induced in CeCoIn5 as well as its two isostructural, isovalent sister compounds CeRhIn5 and CeIrIn 5. Cadmium-doping the heavy-fermion superconductor CeCoIn5 at the percent level acts as an electronic tuning agent, sensitively shifting the balance between superconductivity and antiferromagnetism and opening new ambient-pressure phase space in the study of heavy-fermion ground states. At nominal concentrations of x>0.070, CeCo(In1-xCd x)5 displays a two phase region of antiferromagnetism coexisting with superconductivity up to x0.15, above which no trace of superconductivity persists in specific heat. Similar results was seen in CeIr(In1-xCd x)5 where a quantum critical point (QCP) was observed, separating superconductivity from antiferromagnetism at a nominal critical concentration of x≈0.0475, while CeRh(In1-xCdx)5 goes through an incommensurate to commensurate antiferromagnetic transition nominally at x≈0.10. Amazingly, pressure completely recovers Tc in CeCo(In1-x Cdx)5 measured at nominal concentrations of x=0.10, and 0.15. Phase diagrams were constructed from specific heat and confirmed with resistivity and magnetization.; An introduction to strongly correlated physics, relevant to the 115 family, will be worked out followed by a description of general techniques of synthesis and physical properties measurements central to this dissertation and in the study of material science in general.
机译:近藤格子CeCoIn5的两种流体描述已扩展为包括S. Nakatsuji等人在原始工作中未考虑的其他熵项。 [1]。 Matlab计算机代码的使用成功地迭代求解了f(流动性相互作用的重准粒子的分数),并表明它在连续迭代下收敛于温度相关的函数不变性。线性比热系数gamma是结合f(T)和Kadowacki-Woods比为204mJ / mol-K2从运输考虑中得出的,与CeCoIn 5的290mJ / mole-K2的热容测量值非常吻合[32]。 CeCoIn5及其两个同构的,等价的姊妹化合物CeRhIn5和CeIrIn5已诱导出反铁磁性。以百分比水平掺杂重铁超导体CeCoIn5的镉起电子调谐剂的作用,从而敏感地改变了超导性和反铁磁性之间的平衡。在研究重费米子基态时打开新的环境压力相空间。在x> 0.070的标称浓度下,CeCo(In1-xCd x)5显示反铁磁性的两相区域,共存于x <0.15的超导电性,在此范围内,在比热中没有任何超导电性持续存在。在CeIr(In1-xCd x)5中也观察到了类似的结果,在该处观察到了量子临界点(QCP),在标称临界浓度x&ap; 0.0475时将超导与反铁磁性分开,而CeRh(In1-xCdx)5经过不相称的与反铁磁跃迁的标称值为x&ap; 0.10。令人惊讶的是,在x = 0.10和0.15的名义浓度下测得的压力完全恢复了CeCo(In1-x Cdx)5中的Tc。相图由比热构成,并经电阻率和磁化强度确认。将介绍与115族有关的强相关物理,然后介绍合成的一般技术和物理性能测量,这是本文的核心内容,也是材料科学研究的重点。

著录项

  • 作者

    Pham, Long D.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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