Gd和eu在SnMo 6s s8和PbMo 6s s8粉末超导体中的电子自旋共振

Roland Odermatt
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引用次数: 19

摘要

提出了顺磁离子在超导化合物中稀释的电子自旋共振的基本思想。利用仅包含b°参数的晶体场哈密顿量(Xc)讨论了s态的分辨粉末光谱和精细结构的变窄过程。~1 at的35 GHz和60 GHz实验ESR谱。模拟并解释了MMo6Sg (M Pb, Sn)中Gd+3和Eu+2的含量。对于这两种离子,SKC都以负b°为主。交换参数(/)有两个值:一个来自离子到电子的弛豫速率(Sie),另一个来自g位移。后者对Gd为正,但对Eu为负。两个离子的J值都在10兆电子伏数量级。通过细结构缩窄过程可以看出,Sie降低到超导临界温度(Tc)以下,这使得我们可以提取出2A(0)/fcBTc =5的能隙参数。对所得结果进行了讨论,并与文献中的实验和理论数据进行了比较。
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Résonance de spin électronique de Gd et d'Eu dans les supraconducteurs SnMo 6 S 8 et PbMo 6 S 8 en poudre
The basic ideas of electron spin resonance (ESR) for paramagnetic ions diluted in superconducting compounds are presented. The resolved powder spectra and the fine structure narrowing process are discussed for S-state using a crystal field hamiltonian (Xc) involving only the b° parameter. The experimental ESR spectra at 35 GHz and 60 GHz for ~1 at. percent Gd+3 and Eu+2 in MMo6Sg (M Pb, Sn) are simulated and interpreted. For both ions SKC is dominated by a negative b°- Two values of the exchange parameter (/) are obtained: one from the ion to electron relaxation rate (Sie), the other from the g-shift. This latter is positive for Gd, but negative for Eu. The two values of J are of the order of 10 meV for both ions. The decrease of Sie below the superconducting critical temperature (Tc), seen through the fine structure narrowing process, allows us to extract an energy gap parameter of 2A(0)/fcBTc =5. The results are discussed and compared with experimental and theoreti¬ cal data in literature.
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