论文标题

单层FESE/SRTIO3膜中83 K的超导性配对的光谱证据

Spectroscopic Evidence of Superconductivity Pairing at 83 K in Single-Layer FeSe/SrTiO3 Films

论文作者

Xu, Yu, Rong, Hongtao, Wang, Qingyan, Wu, Dingsong, Hu, Yong, Cai, Yongqing, Gao, Qiang, Yan, Hongtao, Li, Cong, Yin, Chaohui, Chen, Hao, Huang, Jianwei, Zhu, Zhihai, Huang, Yuan, Liu, Guodong, Xu, Zuyan, Zhao, Lin, Zhou, X. J.

论文摘要

在SRTIO3底物(FESE/STO)上生长的单层FESE膜引起了人们的关注,因为它们可能具有创纪录的高级超导临界温度TC和铁基超导体中的不同电子结构。但是,由于从运输,磁和光谱测量结果获得的结果的不一致,它一直在争论其TC如何真正达到。在这里,我们报告了单层FESE/Sto膜中83 K的超导配对的光谱证据。通过制备高质量的单层FESE/Sto膜,我们首次观察出强大超导性诱导的Bogoliubov后弯曲带,通过高分辨率角度分辨光光发射测量值延伸至相当高的结合能量〜100 MEV。 Bogoliubov的后弯带提供了超导配对的新的确定性基准,在单层FESE/STO膜中直接观察到高达83 K。此外,我们发现超导配对状态可以进一步分为两个温度区域,低于64-83 k,低于64K。我们提出的是64-83 K区域可能归因于超导性波动,而64 K以下的区域则与长期超级传导相位相一致性的实现相对应。这些结果表明,在基于铁的超导体中可以实现高达83 K的TC,或者单层FESE/Sto膜中的超导波动是从超导性波动中形成的。

Single-layer FeSe films grown on the SrTiO3 substrate (FeSe/STO) have attracted much attention because of their possible record-high superconducting critical temperature Tc and distinct electronic structures in iron-based superconductors. However, it has been under debate on how high its Tc can really reach due to the inconsistency of the results obtained from the transport, magnetic and spectroscopic measurements. Here we report spectroscopic evidence of superconductivity pairing at 83 K in single-layer FeSe/STO films. By preparing high-quality single-layer FeSe/STO films, we observe for the first time strong superconductivity-induced Bogoliubov back-bending bands that extend to rather high binding energy ~100 meV by high-resolution angle-resolved photoemission measurements. The Bogoliubov back-bending band provides a new definitive benchmark of superconductivity pairing that is directly observed up to 83 K in the single-layer FeSe/STO films. Moreover, we find that the superconductivity pairing state can be further divided into two temperature regions of 64-83 K and below 64 K. We propose the 64-83 K region may be attributed to superconductivity fluctuation while the region below 64 K corresponds to the realization of long-range superconducting phase coherence. These results indicate that either Tc as high as 83 K is achievable in iron-based superconductors, or there is a pseudogap formation from superconductivity fluctuation in single-layer FeSe/STO films.

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