Phonon modes and electron-phonon coupling at the FeSe/SrTiO3 interface

成果类型:
Article
署名作者:
Yang, Hongbin; Zhou, Yinong; Miao, Guangyao; Rusz, Jan; Yan, Xingxu; Guzman, Francisco; Xu, Xiaofeng; Xu, Xianghan; Aoki, Toshihiro; Zeiger, Paul; Zhu, Xuetao; Wang, Weihua; Guo, Jiandong; Wu, Ruqian; Pan, Xiaoqing
署名单位:
University of California System; University of California Irvine; University of California System; University of California Irvine; Chinese Academy of Sciences; Chinese Academy of Sciences; Institute of Physics, CAS; Uppsala University; Princeton University; University of California System; University of California Irvine
刊物名称:
Nature
ISSN/ISSBN:
0028-4672
DOI:
10.1038/s41586-024-08118-0
发表日期:
2024-11-14
页码:
332-+
关键词:
high-temperature superconductivity vibrational spectroscopy fese films chemistry surface
摘要:
The remarkable increase in superconducting transition temperature (T-c) observed at the interface of one-unit-cell FeSe films on SrTiO3 substrates (1 uc FeSe/STO)(1) has attracted considerable research into the interface effects(2-6). Although this high T-c is thought to be associated with electron-phonon coupling (EPC)(2), the microscopic coupling mechanism and its role in the superconductivity remain elusive. Here we use momentum-selective high-resolution electron energy loss spectroscopy to atomically resolve the phonons at the FeSe/STO interface. We uncover new optical phonon modes, coupling strongly with electrons, in the energy range of 75-99 meV. These modes are characterized by out-of-plane vibrations of oxygen atoms in the interfacial double-TiOx layer and the apical oxygens in STO. Our results also demonstrate that the EPC strength and superconducting gap of 1 uc FeSe/STO are closely related to the interlayer spacing between FeSe and the TiOx terminated STO. These findings shed light on the microscopic origin of the interfacial EPC and provide insights into achieving large and consistent T-c enhancement in FeSe/STO and potentially other superconducting systems.