Ramshaw B J, Shekhter Arkady, McDonald Ross D, Betts Jon B, Mitchell J N, Tobash P H, Mielke C H, Bauer E D, Migliori Albert
Pulsed Field Facility, National High Magnetic Field Laboratory, Los Alamos National Laboratory, Los Alamos, NM 87545; and
Pulsed Field Facility, National High Magnetic Field Laboratory, Los Alamos National Laboratory, Los Alamos, NM 87545; and.
Proc Natl Acad Sci U S A. 2015 Mar 17;112(11):3285-9. doi: 10.1073/pnas.1421174112. Epub 2015 Mar 3.
The d and f electrons in correlated metals are often neither fully localized around their host nuclei nor fully itinerant. This localized/itinerant duality underlies the correlated electronic states of the high-Tc cuprate superconductors and the heavy-fermion intermetallics and is nowhere more apparent than in the 5f valence electrons of plutonium. Here, we report the full set of symmetry-resolved elastic moduli of PuCoGa5--the highest Tc superconductor of the heavy fermions (Tc = 18.5 K)--and find that the bulk modulus softens anomalously over a wide range in temperature above Tc. The elastic symmetry channel in which this softening occurs is characteristic of a valence instability--therefore, we identify the elastic softening with fluctuations of the plutonium 5f mixed-valence state. These valence fluctuations disappear when the superconducting gap opens at Tc, suggesting that electrons near the Fermi surface play an essential role in the mixed-valence physics of this system and that PuCoGa5 avoids a valence transition by entering the superconducting state. The lack of magnetism in PuCoGa5 has made it difficult to reconcile with most other heavy-fermion superconductors, where superconductivity is generally believed to be mediated by magnetic fluctuations. Our observations suggest that valence fluctuations play a critical role in the unusually high Tc of PuCoGa5.
关联金属中的d电子和f电子通常既不完全定域于其宿主原子核周围,也不完全离域。这种定域/离域二元性是高温铜酸盐超导体和重费米子金属间化合物的关联电子态的基础,在钚的5f价电子中最为明显。在此,我们报告了重费米子中最高超导转变温度(Tc = 18.5 K)的PuCoGa5的全套对称分辨弹性模量,并发现体积模量在高于Tc的较宽温度范围内异常软化。发生这种软化的弹性对称通道是价态不稳定性的特征——因此,我们将弹性软化与钚5f混合价态的涨落联系起来。当在Tc处超导能隙打开时,这些价态涨落消失,这表明费米面附近的电子在该系统的混合价物理中起着至关重要的作用,并且PuCoGa5通过进入超导态避免了价态转变。PuCoGa5中缺乏磁性,这使得它难以与大多数其他重费米子超导体相协调,在其他超导体中,超导性通常被认为是由磁涨落介导的。我们的观察结果表明,价态涨落在PuCoGa5异常高的Tc中起着关键作用。