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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Enhancement of superconductivity by interfacial phonons in perovskite-clad FeAs monolayer
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APS -APS March Meeting 2017 - Event - Enhancement of superconductivity by interfacial phonons in perovskite-clad FeAs monolayer

机译:APS -APS 2017年3月会议-活动-钙钛矿包覆FeAs单层中的界面声子增强超导性

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The physics at interfaces between monolayer iron-based superconductors (FeSC) and perovskite substrates has received considerable attention due to the unusually high $T_{c}$ of extasciitilde 100 K found recently in monolayer FeSe on SrTiO$_{mathrm{3}}$. It has been suggested that forward-scattering interfacial phonons coupled with the Fe-layer electrons can enhance superconductivity from virtually any pre-existing electron-based pairing. Here we report a spectroscopic imaging scanning tunneling microscopy (SI-STM) study on a parent-compound superconductor Sr$_{mathrm{2}}$VO$_{mathrm{3}}$FeAs, a self-assembled bulk example of FeSC monolayers sandwiched by perovskite layers with substantially high $T_{c} quad =$ 33 - 37 K. The quasiparticle interference (QPI) shows clear signatures of forward-scattering phonons with unprecedentedly strong coupling g$_{mathrm{ph}}^{mathrm{2}}$/$Omega _{mathrm{ph}}^{mathrm{2}}$ extasciitilde 0.7. Our masked QPI analysis based on the superconducting gap ($Delta )$ and V-Fe hybridization strength ($Gamma )$ maps show clear positive correlations between all pairs of $Delta $, $Gamma $ and g$_{mathrm{ph}}$, which could be the hallmark of pairing enhancement due to interfacial phonons. A self-consistent Migdal-Eliashberg T-matrix QPI simulation reproduces most of the detailed features of the experimental QPI and shows that as much as half of the pairing in this material could be attributable to the electron-phonon coupling.
机译:由于最近在SrTiO $ _ {mathrm {3}}上的单层FeSe中发现了异常高的100 K兴奋剂$ T_ {c} $,因此,单层铁基超导体(FeSC)与钙钛矿衬底之间的界面物理受到了广泛关注。 $。已经提出,与铁层电子耦合的前向散射界面声子实际上​​可以从任何现有的基于电子的配对中增强超导性。在这里,我们报告了对母体化合物超导体Sr $ _ {mathrm {2}} $ VO $ _ {mathrm {3}} $ FeAs的光谱成像扫描隧道显微镜(SI-STM)研究,该样品是自组装的FeSC单层夹在钙钛矿层之间,并具有高的$ T_ {c} quad = $ 33-37K。准粒子干涉(QPI)清楚地显示了前向散射声子的特征,其偶合力g $ _ {mathrm {ph}} ^ {mathrm {2}} $ / $ Omega _ {mathrm {ph}} ^ {mathrm {2}} $ extasciitilde 0.7。我们基于超导间隙($ Delta)$和V-Fe杂交强度($ Gamma)$映射的掩盖QPI分析显示,所有成对的$ Delta $,$ Gamma $和g $ _ {mathrm {ph} } $,这可能是由于界面声子导致配对增强的标志。自洽的Migdal-Eliashberg T矩阵QPI模拟重现了实验QPI的大部分详细功能,并表明该材料中多达一半的配对可归因于电子-声子耦合。

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