Quantum ferroelectric instabilities in superconducting SrTiO
arXiv:1801.08736 · doi:10.1103/PhysRevMaterials.2.104804
Abstract
We examine the effects of strain and cation substitution on the superconducting phase of polar semiconductors near a ferroelectric quantum phase transition with a model that combines a strong coupling theory of superconductors with a standard microscopic framework for displacive polar modes coupled to strain degrees of freedom. Our calculations reveal that the superconducting transition temperature is enhanced by proximity to the ferroelectric instability from the disordered side, while it is generally suppressed in the ordered phase due to its increase in dielectric stiffness and a reduction of critical fluctuations from dipolar induced anisotropies. The condensation of the pairing phonon excitations generates a kink in at a charge density that is generally lower than that of the quantum critical point (QCP) and where both superconducting and ferroeletric orders set-in. We apply our model to SrTiO and find that the anti-adiabatic limit places the kink nearly at its QCP. As the QCP is pushed to higher charge densities with either tuning parameter, we find that the dome narrows and sharpens. Our model is in qualitatively and fair quantitatively agreement with the recent observation of overlapping ferroelectric-like and superconducting instabilities in n-doped SrCaTiO and strain tunning of in n-doped SrTiO. We compare our results to previous models invoking order-disorder lattice dynamics to describe the pairing excitations.
8 pages, 3 figures
References in corpus (10)
- Physics of SrTiO-based heterostructures and nanostructures: a review
- A ferroelectric quantum phase transition inside the superconducting dome of SrCaTiO
- Electron-phonon interaction and charge carrier mass enhancement in SrTiO3
- Fermi surface of the most dilute superconductor
- Prospects and Applications Near Ferroelectric Quantum Phase Transitions
- Superconductivity at low density near a ferroelectric quantum critical point: doped SrTiO
- Large isotropic negative thermal expansion above a structural quantum phase transition
- Strain and ferroelectric soft mode induced superconductivity in strontium titanate
- Random Electric Field Instabilities of Relaxor Ferroelectrics
- Negative thermal expansion near two structural quantum phase transitions
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