Suppr超能文献

α-Yb1-xFexAlB4(0⩽x⩽0.50)和α-LuAlB4化合物中的传导电子自旋共振

Conduction electron spin resonance in the α-Yb1-xFexAlB4 (0 ⩽ x ⩽ 0.50) and α-LuAlB4 compounds.

作者信息

Holanda L M, Lesseux G G, Magnavita E T, Ribeiro R A, Nakatsuji S, Kuga K, Fisk Z, Oseroff S B, Urbano R R, Rettori C, Pagliuso P G

机构信息

Instituto de Física 'Gleb Wataghin', UNICAMP, Campinas, SP 13083-859, Brazil. Universidade Federal Rural do Semi-Árido (UFERSA), Pau dos Ferros, RN 59900-000, Brazil.

出版信息

J Phys Condens Matter. 2015 Jul 1;27(25):255601. doi: 10.1088/0953-8984/27/25/255601. Epub 2015 Jun 5.

Abstract

β-YbAlB4 has become one of the most studied heavy fermion systems since its discovery due to its remarkable physical properties. This system is the first reported Yb-based heavy-fermion superconductor (HFS) for which the low-T superconducting state emerges from a non-fermi-liquid (NFL) normal state associated with quantum criticality Nakatsuji et al 2008 Nature 4 603. Additionally, it presents a striking and unprecedented electron spin resonance (ESR) signal which behaves as a conduction electron spin resonance (CESR) at high temperatures and acquires features of the Yb(3+) local moment ESR at low temperatures. The latter, also named Kondo quasiparticles spin resonance (KQSR), has been defined as a 4f-ce strongly coupled ESR mode that behaves as a local probe of the Kondo quasiparticles in a quantum critical regime, Holanda et al 2011 Phys. Rev. Lett. 107 026402. Interestingly, β-YbAlB4 possesses a previously known structural variant, namely the α-YbAlB4, phase which is a paramagnetic Fermi liquid (FL) at low temperatures Macaluso et al 2007 Chem. Mater. 19 1918. However, it has been recently suggested that the α-YbAlB4 phase may be tuned to NFL behavior and/or magnetic ordering as the compound is doped with Fe. Here we report ESR studies on the α-Yb1-xFexAlB4 (0 ⩽ x ⩽ 0.50) series as well as on the reference compound α-LuAlB4. For all measured samples, the observed ESR signal behaves as a CESR in the entire temperature range (10 K ≲ T ≲ 300 K) in clear contrast with what has been observed for β-YbAlB4. This striking result indicates that the proximity to a quantum critical point is crucial to the occurrence of a KQSR signal.

摘要

自发现以来,β-YbAlB4因其卓越的物理性质,已成为研究最多的重费米子体系之一。该体系是首个被报道的基于Yb的重费米子超导体(HFS),其低温超导态源自与量子临界性相关的非费米液体(NFL)正常态(中津寺等人,2008年,《自然》4603页)。此外,它呈现出一个引人注目的、前所未有的电子自旋共振(ESR)信号,该信号在高温下表现为传导电子自旋共振(CESR),在低温下具有Yb(3+) 局域磁矩ESR的特征。后者也被称为近藤准粒子自旋共振(KQSR),已被定义为一种4f-ce强耦合ESR模式,在量子临界区域表现为近藤准粒子的局域探针(霍兰达等人,2011年,《物理评论快报》107 026402)。有趣的是,β-YbAlB4具有一种先前已知的结构变体,即α-YbAlB4相,该相在低温下是顺磁费米液体(FL)(马卡卢索等人,2007年,《化学材料》19 1918页)。然而,最近有人提出,随着该化合物掺杂Fe,α-YbAlB4相可能会被调制成NFL行为和/或磁有序。在此,我们报告了对α-Yb1-xFexAlB4(0⩽x⩽0.50)系列以及参考化合物α-LuAlB4的ESR研究。对于所有测量的样品,观察到的ESR信号在整个温度范围(10 K≲T≲300 K)内都表现为CESR,这与β-YbAlB4的观测结果形成鲜明对比。这一惊人结果表明,接近量子临界点对于KQSR信号的出现至关重要。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验