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由价带和芯能级激发引发的(TaSe)I中的超快动力学。

Ultrafast dynamics in (TaSe)I triggered by valence and core-level excitation.

作者信息

Bronsch Wibke, Tuniz Manuel, Crupi Giuseppe, De Col Michela, Puntel Denny, Soranzio Davide, Giammarino Alessandro, Perlangeli Michele, Berger Helmuth, De Angelis Dario, Fainozzi Danny, Paltanin Ettore, Pelli Cresi Jacopo Stefano, Kurdi Gabor, Foglia Laura, Mincigrucci Riccardo, Parmigiani Fulvio, Bencivenga Filippo, Cilento Federico

机构信息

Elettra - Sincrotrone Trieste S.C.p.A., Strada Statale 14, km 163.5, 34149 Basovizza, Trieste, Italy.

Dipartimento di Fisica, Università degli Studi di Trieste, 34127 Trieste, Italy.

出版信息

Faraday Discuss. 2022 Sep 15;237(0):40-57. doi: 10.1039/d2fd00019a.

Abstract

Dimensionality plays a key role in the emergence of ordered phases, such as charge density-waves (CDW), which can couple to, and modulate, the topological properties of matter. In this work, we study the out-of-equilibrium dynamics of the paradigmatic quasi-one-dimensional material (TaSe)I, which exhibits a transition into an incommensurate CDW phase when cooled to just below room temperature, namely at = 263 K. We make use of both optical laser and free-electron laser (FEL) based time-resolved spectroscopies in order to study the effect of a selective excitation on the normal-state and on the CDW phases by probing the near-infrared/visible optical properties both along and perpendicularly to the direction of the CDW, where the system is metallic and insulating, respectively. Excitation of the core-levels by ultrashort X-ray FEL pulses at 47 eV and 119 eV induces reflectivity transients resembling those recorded when only exciting the valence band of the compound - by near-infrared pulses at 1.55 eV - in the case of the insulating sub-system. Conversely, the metallic sub-system displays relaxation dynamics which depend on the energy of photo-excitation. Moreover, excitation of the CDW amplitude mode is recorded only for excitation at a low-photon-energy. This fact suggests that the coupling of light to ordered states of matter can predominantly be achieved when directly injecting delocalized carriers in the valence band, rather than localized excitations in the core levels. Complementing this, table-top experiments allow us to prove the quasi-unidirectional nature of the CDW phase in (TaSe)I, whose fingerprints are detected along its -axis only. Our results provide new insights into the symmetry of the ordered phase of (TaSe)I perturbed by a selective excitation, and suggest a novel approach based on complementary table-top and FEL spectroscopies for the study of complex materials.

摘要

维度在有序相的出现中起着关键作用,例如电荷密度波(CDW),它可以与物质的拓扑性质耦合并对其进行调制。在这项工作中,我们研究了典型的准一维材料(TaSe)I的非平衡动力学,该材料在冷却至略低于室温(即263K)时会转变为非公度CDW相。我们利用基于光学激光和自由电子激光(FEL)的时间分辨光谱学,通过探测沿CDW方向及其垂直方向的近红外/可见光光学性质,来研究选择性激发对正常态和CDW相的影响,在这两个方向上系统分别表现为金属性和绝缘性。在绝缘子系统中,47eV和119eV的超短X射线FEL脉冲对芯能级的激发会诱导出类似于仅用1.55eV的近红外脉冲激发化合物价带时所记录的反射率瞬变。相反,金属子系统显示出依赖于光激发能量的弛豫动力学。此外,仅在低光子能量激发时才记录到CDW振幅模式的激发。这一事实表明,当直接在价带中注入离域载流子而非在芯能级中进行局域激发时,光与物质有序态的耦合才能主要实现。与此互补的是,桌面实验使我们能够证明(TaSe)I中CDW相的准单向性质,其特征仅沿其轴被检测到。我们的结果为受选择性激发扰动的(TaSe)I有序相的对称性提供了新的见解,并提出了一种基于互补桌面光谱学和FEL光谱学的研究复杂材料的新方法。

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