Ultrafast quasiparticle relaxation dynamics in the topological materials LaSbTe and CeSbTe

IF 3.6 2区 物理与天体物理 Q2 PHYSICS, APPLIED Applied Physics Letters Pub Date : 2025-04-04 DOI:10.1063/5.0252845
Liye Cao, Cuiwei Zhang, Yi Yang, Lei Wang, Yanghao Meng, Bixia Gao, Feng Jin, Xinbo Wang, Youguo Shi, Rongyan Chen
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Abstract

We utilize ultrafast time-resolved pump-probe spectroscopy to investigate photoinduced quasiparticle dynamics in the topological materials LaSbTe and CeSbTe. Our results reveal that the relaxation dynamics in both materials are characterized by two distinct decay channels. In LaSbTe, the amplitude of the photoinduced reflectivity related to the first decay channel exhibits two pronounced peaks at 163 and 280 K, whereas in CeSbTe, a single peak emerges at 165 K. These observations are strongly indicative of charge-density-wave phase transition(s). Notably, the temperature dependence of the relaxation time for this decay process in CeSbTe deviates from that in LaSbTe, probably due to the influence of 4f electrons. For the second decay process, LaSbTe exhibits behaviors dominated by phonon-assisted electron–hole recombination, while CeSbTe demonstrates a slower relaxation at low temperatures, possibly due to the imbalance between electron- and hole-type carriers. Furthermore, two coherent phonon modes around 1 and 3 THz are identified in both LaSbTe and CeSbTe. Remarkably, the phonon amplitudes in CeSbTe exhibit an unusual decrease with decreasing temperature until a very low temperature, which can potentially be ascribed to spin–phonon interactions. These findings reveal nonequilibrium charge dynamics and collective excitation in LaSbTe and CeSbTe, offering insights into the underlying physics of topological materials.
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拓扑材料 LaSbTe 和 CeSbTe 中的超快准粒子弛豫动力学
我们利用超快时间分辨泵浦探针光谱研究了拓扑材料LaSbTe和CeSbTe的光致准粒子动力学。结果表明,两种材料的弛豫动力学都具有两个不同的衰减通道。在LaSbTe中,与第一衰减通道相关的光致反射率振幅在163 K和280 K处出现两个明显的峰值,而在CeSbTe中,在165 K处出现一个单峰。这些观测结果强烈地表明电荷密度波相变(s)。值得注意的是,由于4f电子的影响,CeSbTe中这种衰变过程的弛豫时间的温度依赖性与LaSbTe中有所不同。对于第二个衰变过程,LaSbTe表现出声子辅助电子-空穴复合为主的行为,而CeSbTe在低温下表现出较慢的弛豫,可能是由于电子和空穴型载流子之间的不平衡。此外,在LaSbTe和CeSbTe中都确定了1和3太赫兹左右的两个相干声子模式。值得注意的是,在CeSbTe中声子振幅表现出不寻常的下降,随着温度的降低,直到非常低的温度,这可能归因于自旋声子相互作用。这些发现揭示了LaSbTe和CeSbTe的非平衡电荷动力学和集体激发,为拓扑材料的潜在物理学提供了见解。
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来源期刊
Applied Physics Letters
Applied Physics Letters 物理-物理:应用
CiteScore
6.40
自引率
10.00%
发文量
1821
审稿时长
1.6 months
期刊介绍: Applied Physics Letters (APL) features concise, up-to-date reports on significant new findings in applied physics. Emphasizing rapid dissemination of key data and new physical insights, APL offers prompt publication of new experimental and theoretical papers reporting applications of physics phenomena to all branches of science, engineering, and modern technology. In addition to regular articles, the journal also publishes invited Fast Track, Perspectives, and in-depth Editorials which report on cutting-edge areas in applied physics. APL Perspectives are forward-looking invited letters which highlight recent developments or discoveries. Emphasis is placed on very recent developments, potentially disruptive technologies, open questions and possible solutions. They also include a mini-roadmap detailing where the community should direct efforts in order for the phenomena to be viable for application and the challenges associated with meeting that performance threshold. Perspectives are characterized by personal viewpoints and opinions of recognized experts in the field. Fast Track articles are invited original research articles that report results that are particularly novel and important or provide a significant advancement in an emerging field. Because of the urgency and scientific importance of the work, the peer review process is accelerated. If, during the review process, it becomes apparent that the paper does not meet the Fast Track criterion, it is returned to a normal track.
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