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Oxygen Vacancy Induced Flat Phonon Mode at FeSe /SrTiO3 interface

机译:FeSe / SrTiO3界面处的空位诱导平面声子模

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摘要

A high-frequency optical phonon mode of SrTiO3 (STO) was found to assist the high-temperature superconductivity observed recently at the interface between monolayer FeSe and STO substrate. However, the origin of this mode is not clear. Through first-principles calculations, we find that there is a novel polar phonon mode on the surface layers of the STO substrate, which does not exist in the STO crystals. The oxygen vacancies near the FeSe/STO interface drives the dispersion of this phonon mode to be flat and lowers its energy, whereas the charge transfer between STO substrate and FeSe monolayer further reduces its energy to 81 meV. This energy is in good agreement with the experimental value fitted by Lee et al. for the phonon mode responsible for the observed replica band separations and the increased superconducting gap. The oxygen-vacancy-induced flat and polar phonon mode provides clues for understanding the origin of high Tc superconductivity at the FeSe/STO interface.
机译:发现SrTiO3(STO)的高频光学声子模式有助于最近在单层FeSe和STO衬底之间的界面处观察到的高温超导性。但是,此模式的起源尚不清楚。通过第一性原理计算,我们发现在STO基板的表面层上存在一种新型的极性声子模式,这在STO晶体中不存在。 FeSe / STO界面附近的氧空位使该声子模式的色散变得平坦并降低其能量,而STO衬底和FeSe单层之间的电荷转移进一步将其能量降低至81 meV。这种能量与Lee等人的实验值非常吻合。声子模式负责观察到的复制带分离和增加的超导间隙。氧空位引起的平面和极性声子模式为了解FeSe / STO界面高Tc超导性的起源提供了线索。

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