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UPd₂Al₃中局域磁矩与超导“重”电子之间的强耦合。

Strong coupling between local moments and superconducting 'heavy' electrons in UPd2Al3.

作者信息

Sato N K, Aso N, Miyake K, Shiina R, Thalmeier P, Varelogiannis G, Geibel C, Steglich F, Fulde P, Komatsubara T

机构信息

Department of Physics, Graduate School of Science, Nagoya University, Nagoya 464-8602, Japan.

出版信息

Nature. 2001 Mar 15;410(6826):340-3. doi: 10.1038/35066519.

Abstract

The electronic structure of heavy-fermion compounds arises from the interaction of nearly localized 4f- or 5f-shell electrons (with atomic magnetic moments) with the free-electron-like itinerant conduction-band electrons. In actinide or rare-earth heavy-fermion materials, this interaction yields itinerant electrons having an effective mass about 100 times (or more) the bare electron mass. Moreover, the itinerant electrons in UPd2Al3 are found to be superconducting well below the magnetic ordering temperature of this compound, whereas magnetism generally suppresses superconductivity in conventional metals. Here we report the detection of a dispersive excitation of the ordered f-electron moments, which shows a strong interaction with the heavy superconducting electrons. This 'magnetic exciton' is a localized excitation which moves through the lattice as a result of exchange forces between the magnetic moments. By combining this observation with previous tunnelling measurements on this material, we argue that these magnetic excitons may produce effective interactions between the itinerant electrons, and so be responsible for superconductivity in a manner analogous to the role played by phonons in conventional superconductors.

摘要

重费米子化合物的电子结构源于近局域化的4f或5f壳层电子(带有原子磁矩)与类自由电子的巡游导带电子之间的相互作用。在锕系或稀土重费米子材料中,这种相互作用产生的巡游电子有效质量约为裸电子质量的100倍(或更大)。此外,人们发现UPd2Al3中的巡游电子在远低于该化合物磁有序温度时就会超导,而在传统金属中磁性通常会抑制超导性。在此,我们报告了对有序f电子磁矩的色散激发的检测,其显示出与重超导电子有强烈相互作用。这种“磁激子”是一种局域激发,由于磁矩之间的交换力而在晶格中移动。通过将这一观测结果与此前对该材料的隧穿测量相结合,我们认为这些磁激子可能在巡游电子之间产生有效相互作用,从而以类似于声子在传统超导体中所起作用的方式导致超导性。

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