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强关联BiSrCaCuO单晶的非平衡电子与晶格动力学

Nonequilibrium electron and lattice dynamics of strongly correlated BiSrCaCuO single crystals.

作者信息

Konstantinova Tatiana, Rameau Jonathan D, Reid Alexander H, Abdurazakov Omadillo, Wu Lijun, Li Renkai, Shen Xiaozhe, Gu Genda, Huang Yuan, Rettig Laurenz, Avigo Isabella, Ligges Manuel, Freericks James K, Kemper Alexander F, Dürr Hermann A, Bovensiepen Uwe, Johnson Peter D, Wang Xijie, Zhu Yimei

机构信息

Brookhaven National Laboratory, Upton, NY 11973, USA.

Department of Physics and Astronomy, Stony Brook University, Stony Brook, NY 11794, USA.

出版信息

Sci Adv. 2018 Apr 27;4(4):eaap7427. doi: 10.1126/sciadv.aap7427. eCollection 2018 Apr.

Abstract

The interplay between the electronic and lattice degrees of freedom in nonequilibrium states of strongly correlated systems has been debated for decades. Although progress has been made in establishing a hierarchy of electronic interactions with the use of time-resolved techniques, the role of the phonons often remains in dispute, a situation highlighting the need for tools that directly probe the lattice. We present the first combined megaelectron volt ultrafast electron diffraction and time- and angle-resolved photoemission spectroscopy study of optimally doped BiSrCaCuO. Quantitative analysis of the lattice and electron subsystems' dynamics provides a unified picture of nonequilibrium electron-phonon interactions in the cuprates beyond the -temperature model. The work provides new insights on the specific phonon branches involved in the nonequilibrium heat dissipation from the high-energy Cu-O bond stretching "hot" phonons to the lowest-energy acoustic phonons with correlated atomic motion along the <110> crystal directions and their characteristic time scales. It reveals a highly nonthermal phonon population during the first several picoseconds after the photoexcitation. The approach, taking advantage of the distinct nature of electrons and photons as probes, is applicable for studying energy relaxation in other strongly correlated electron systems.

摘要

几十年来,强关联系统非平衡态中电子与晶格自由度之间的相互作用一直备受争议。尽管利用时间分辨技术在建立电子相互作用层次结构方面取得了进展,但声子的作用往往仍存在争议,这种情况凸显了直接探测晶格的工具的必要性。我们首次对最佳掺杂的BiSrCaCuO进行了兆电子伏特超快电子衍射与时间和角分辨光电子能谱的联合研究。对晶格和电子子系统动力学的定量分析提供了超越温度模型的铜酸盐中非平衡电子 - 声子相互作用的统一图景。这项工作为非平衡热耗散中涉及的特定声子分支提供了新的见解,从高能的Cu - O键拉伸“热”声子到沿<110>晶体方向具有相关原子运动的最低能量声学声子及其特征时间尺度。它揭示了光激发后的最初几皮秒内高度非热的声子分布。这种利用电子和光子作为探针的不同性质的方法适用于研究其他强关联电子系统中的能量弛豫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d91/5922801/58737b91d1fc/aap7427-F1.jpg

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