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Superconductivity mediated by polar modes in ferroelectric metals

Published version
Peer-reviewed

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Authors

Enderlein, C. 
de Oliveira, J. Ferreira 
Tompsett, D. A. 
Saitovitch, E. Baggio 
Saxena, S. S. 

Abstract

Abstract: The occurrence of superconductivity in doped SrTiO3 at low carrier densities points to the presence of an unusually strong pairing interaction that has eluded understanding for several decades. We report experimental results showing the pressure dependence of the superconducting transition temperature, Tc, near to optimal doping that sheds light on the nature of this interaction. We find that Tc increases dramatically when the energy gap of the ferroelectric critical modes is suppressed, i.e., as the ferroelectric quantum critical point is approached in a way reminiscent to behaviour observed in magnetic counterparts. However, in contrast to the latter, the coupling of the carriers to the critical modes in ferroelectrics is predicted to be small. We present a quantitative model involving the dynamical screening of the Coulomb interaction and show that an enhancement of Tc near to a ferroelectric quantum critical point can arise due to the virtual exchange of longitudinal hybrid-polar-modes, even in the absence of a strong coupling to the transverse critical modes.

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Keywords

Article, /639/301/1005/1007, /639/766/119/996, /639/766/119/2795, /639/766/119/1003, /144, /128, /120, /129, /119, article

Journal Title

Nature Communications

Conference Name

Journal ISSN

2041-1723

Volume Title

11

Publisher

Nature Publishing Group UK