SrTiO3上单层FeSe的多通道超导性:自旋涨落和电子-声子相互作用的相互作用

Fabian Schrodi, A. Aperis, P. Oppeneer
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引用次数: 6

摘要

我们研究了电子-声子耦合以及自旋和电荷波动对SrTiO$_3$衬底上单层FeSe超导态的影响。这三种玻色子介质在多通道、全带宽、多频带和各向异性的相互作用态Eliashberg理论中被同等对待。我们的自洽计算表明,超导间隙的s波对称性只有在完全没有自旋涨落的情况下才能兼容。当自旋涨落存在时,总是得到变符号的无节点d波对对称,但解释间隙大小和临界温度的基本因素仍然是界面电子-声子相互作用。
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Multichannel superconductivity of monolayer FeSe on SrTiO3 : Interplay of spin fluctuations and electron-phonon interaction
We investigate the effects of electron-phonon coupling, as well as of spin and charge fluctuations on the superconducting state in a single layer of FeSe on SrTiO$_3$ substrate. These three bosonic mediators of Cooper pairing are treated on equal footing in a multichannel, full-bandwidth, multiband, and anisotropic Eliashberg theory of the interacting state. Our self-consistent calculations show that an s-wave symmetry of the superconducting gap is compatible only with a complete absence of spin fluctuations. When spin fluctuations are present, the sign-changing nodeless d-wave pairing symmetry is always obtained, yet the essential ingredient for explaining the gap magnitude and critical temperature is still the interfacial electron-phonon interaction.
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