Unconventional Superconductivity in the Kondo-lattice System CeCu2Si2 - a Personal Perspective

Q4 Physics and Astronomy New Physics: Sae Mulli Pub Date : 2023-12-18 DOI:10.3938/npsm.73.1067
F. Steglich
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Abstract

In the first part of this article, I briefly review early research activities concerning strongly correlated electron systems, beginning with the discovery of superconductivity and the first observation of a resistance minimum in nominally pure Cu-metal, which was explained many years later by Kondo. I will also address the antagonistic behavior of conventional (BCS) superconductivity and magnetism. The main focus of this paper is on the discovery of non-BCS-type superconductivity in the Kondo-lattice system CeCu$_2$Si$_2$, a prototypical heavy-fermion metal. Here, the superconducting state is created by a periodic lattice of 100% of magnetic Ce^3+ ions. Meanwhile, more than fifty lanthanide-, actinide-, and transition-metal-based intermetallic compounds are known to belong to the class of heavy-fermion superconductors. Finally, I will give my personal view of the current knowledge of this kind of unconventional superconductivity.
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近藤晶格系统 CeCu2Si2 中的非常规超导性--个人视角
在本文的第一部分,我简要回顾了有关强相关电子系统的早期研究活动,首先是发现超导电性和首次观测到名义上纯铜金属中的电阻最小值,多年后近藤对此做出了解释。我还将讨论传统(BCS)超导和磁性的对立行为。本文的重点是在近藤晶格体系 CeCu$_2$Si$_2$ 中发现非 BCS 型超导电性,这是一种典型的重费米子金属。在这里,超导态是由 100% 的磁性 Ce^3+ 离子的周期性晶格产生的。同时,已知有 50 多种镧系、锕系和过渡金属基金属间化合物属于重铁素体超导体。最后,我将就目前对这类非常规超导的认识谈谈个人看法。
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来源期刊
New Physics: Sae Mulli
New Physics: Sae Mulli Physics and Astronomy-Physics and Astronomy (all)
CiteScore
0.40
自引率
0.00%
发文量
104
期刊介绍: New Physics: Sae Mulli monthly publishes peer-reviewed research papers and review papers which make significant, original and correct contributions to one of four categories of physics: 1) review of current physics topics, 2) applied physics(condensed matter, optics, etc.), 3) particle and nuclear physics, 4) other areas of physics (physics education, atomic and molecular physics, interdisciplinary, etc.). Both experimental and theoretical papers are accepted. Papers should be written in Korean or English. The review papers deliver the current physics topics of interests and the current instrumentation (both experimental and theoretical) knowledge at the university level so that even advanced high school students or undergraduate students can access easily. Papers based on successful and original student projects done at Korean local universities are specially welcome.
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