论文标题

时间分辨光谱法的繁重屈光度系统的Terahertz电导率

Terahertz Conductivity of Heavy-fermion Systems from Time-resolved Spectroscopy

论文作者

Yang, Chia-Jung, Pal, Shovon, Zamani, Farzaneh, Kliemt, Kristin, Krellner, Cornelius, Stockert, Oliver, Löhneysen, Hilbert v., Kroha, Johann, Fiebig, Manfred

论文摘要

DRUDE模型描述了简单金属中的自由电子传导,并由移动电子在材料中具有的自由控制。然而,在密切相关的系统中,观察到光导率与简单金属drude行为的显着偏差。在这里,我们使用时间分辨,相位敏感的Terahertz Spectroscopepopy,研究了重力系统系统CECU $ _ {\ MATHRM {\ MATHRM {\ MATHRM {\ MATHRM {\ MATHRM {\ MATHRM {\ MATHRM {X}} $的光电电导率。 Terahertz电场在厚处的材料中产生了两种类型的激发:首先,将重型准颗粒完好无损的映射激发。其次,杂交导带的重和轻度部分之间的谐振互动过渡破坏了近野单线。我们发现,围式折线间的跨带跃迁不会造成drude峰,而近围栏内的激发产生了预期的drude响应。因此,可以将这两个根本不同的相关贡献分开,以分离光电率。

The Drude model describes the free-electron conduction in simple metals, governed by the freedom that the mobile electrons have within the material. In strongly correlated systems, however, a significant deviation of the optical conductivity from the simple metallic Drude behavior is observed. Here, we investigate the optical conductivity of the heavy-fermion system CeCu$_{\mathrm{6-x}}$Au$_{\mathrm{x}}$, using time-resolved, phase-sensitive terahertz spectroscopy. Terahertz electric field creates two types of excitations in heavy-fermion materials: First, the intraband excitations that leave the heavy quasiparticles intact. Second, the resonant interband transitions between the heavy and light parts of the hybridized conduction band that break the Kondo singlet. We find that the Kondo-singlet breaking interband transitions do not create a Drude peak, while the Kondo-retaining intraband excitations yield the expected Drude response; thus, making it possible to separate these two fundamentally different correlated contributions to the optical conductivity.

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