论文标题

超精细耦合作为重费材料中轨道各向异性的探针

Hyperfine Couplings as a Probe of Orbital Anisotropy in Heavy Fermion Materials

论文作者

Menegasso, P., Souza, J. C., Vinograd, I., Wang, Z., Edwards, S. P., Pagliuso, P. G., Curro, N. J., Urbano, R. R.

论文摘要

核和电子自旋之间在重费材料材料中转移的超精细相互作用取决于$ f $ - 电子轨道和周围远处核的杂交。在Cemin $ _5 $(M = RH,IR,CO)中,高精细耦合到两个辅助位点以及CE的晶体电场都非常依赖于过渡金属。我们测量一系列CERH $ _ {1-x} $ ir $ _x $ in $ _5 $ crystals,发现超精细耦合反映了基态CE 4 $ f $ savefunction的轨道各向异性。这些发现提供了直接证明,表明该系统中CE-IN平面的杂交主导了静止的过渡。

The transferred hyperfine interaction between nuclear and electron spins in an heavy fermion material depends on the hybridization between the $f$-electron orbitals and those surrounding a distant nucleus. In CeMIn$_5$ (M=Rh, Ir, Co), both the hyperfine coupling to the two indium sites as well as the crystalline electric field at the Ce are strongly dependent on the transition metal. We measure a series of CeRh$_{1-x}$Ir$_x$In$_5$ crystals and find that the hyperfine coupling reflects the orbital anisotropy of the ground state Ce 4$f$ wavefunction. These findings provide direct proof that the localized to itinerant transition is dominated by hybridization out of the Ce-In plane in this system.

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