Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Phys Rev Lett. 2012 Feb 10;108(6):066407. doi: 10.1103/PhysRevLett.108.066407.
We report magnetic field orientation-dependent measurements of the superconducting upper critical field in high quality single crystals of URu(2)Si(2) and find the effective g factor estimated from the Pauli limit to agree remarkably well with that found in quantum oscillation experiments, both quantitatively and in the extreme anisotropy (≈10(3)) of the spin susceptibility. Rather than a strictly itinerant or purely local f-electron picture being applicable, the latter suggests the quasiparticles subject to pairing in URu(2)Si(2) to be "composite heavy fermions" formed from bound states between conduction electrons and local moments with a protected Ising behavior. Non-Kramers doublet local magnetic degrees of freedom suggested by the extreme anisotropy favor a local pairing mechanism.
我们报告了在高质量的 URu(2)Si(2)单晶中,磁场方向依赖的超导上临界场的测量结果,并发现从泡利极限估计的有效 g 因子与量子振荡实验中发现的非常吻合,无论是在数量上还是在自旋磁化率的极端各向异性(≈10(3))上。这表明在 URu(2)Si(2)中,参与配对的准粒子不是严格的巡游或纯局域 f 电子图像,而是由传导电子和局域磁矩之间的束缚态形成的“复合重费米子”,具有受保护的伊辛行为。由极端各向异性所暗示的非克鲁曼双重本地磁自由度有利于局域配对机制。