Separated Electron-Phonon and Phonon-Phonon Scatterings Across Interface in Thin Film LaCoO3/SrTiO3

被引:5
作者
Hao, Wenjie [1 ,2 ]
Gu, Minghui [2 ,3 ]
Tian, Zhenyun [2 ]
Fu, Shaohua [2 ]
Meng, Meng [2 ,3 ]
Zhang, Hong [1 ]
Guo, Jiandong [2 ,3 ]
Zhao, Jimin [2 ,3 ,4 ]
机构
[1] Sichuan Univ, Coll Phys, Chengdu 610065, Peoples R China
[2] Chinese Acad Sci, Inst Phys, Beijing Natl Lab Condensed Matter Phys, Beijing 100190, Peoples R China
[3] Univ Chinese Acad Sci, Sch Phys Sci, Beijing 100049, Peoples R China
[4] Songshan Lake Mat Lab, Dongguan 523808, Guangdong, Peoples R China
基金
北京市自然科学基金; 中国国家自然科学基金;
关键词
coherent acoustic phonons; electron-phonon coupling; heterostructures; phonon-phonon scattering; ultrafast spectroscopy; TEMPERATURE; SUPERCONDUCTORS; TRANSITION;
D O I
10.1002/advs.202305900
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Electron-phonon coupling (EPC) and phonon-phonon scattering (PPS) are at the core of the microscopic physics mechanisms of vast quantum materials. However, to date, there are rarely reports that these two processes can be spatially separated, although they are usually temporally detached with different characteristic lifetimes. Here, by employing ultrafast spectroscopy to investigate the photo-carrier ultrafast dynamics in a LaCoO3 thin film on a (100) SrTiO3 substrate, intriguing evidence is found that the two interactions are indeed spatially separated. The EPC mainly occurs in the thin film, whereas PPS is largely in the substrate, especially at the several atomic layers near the interface. Across-interface penetration and decay of optical phonons into acoustic phonons thus naturally occur. An EPC strength lambda(Eg) = 0.30 is also obtained and an acoustic phonon mode at 45.3 GHz is observed. The finding lays out a cornerstone for future quantum nano device designs.
引用
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页数:8
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