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Strong coupling theory of superconductivity and ferroelectric quantum criticality in metallic SrTiO3

  • Sudip Kumar Saha
  • , M. N. Gastiasoro
  • , Jonathan Ruhman
  • , Avraham Klein

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

Superconductivity in doped SrTiO3 has remained an enduring mystery for over 50 years. The material’s status as a “quantum" ferroelectric metal, characterized by a soft polar mode, suggests that quantum criticality could play a pivotal role in the emergence of its superconducting state. We show that the system is amenable to a strong coupling (Eliashberg) pairing analysis, with the dominant coupling to the soft mode being a “dynamical” Rashba coupling. We compute the expected Tc for the entire phase diagram, all the way to the quantum critical point and beyond. We demonstrate that the linear coupling is sufficient to obtain a rough approximation of the experimentally measured phase diagram, but that nonlinear coupling terms are crucial in reproducing the finer features in the ordered phase. The primary role of nonlinear terms at the peak of the superconducting dome is to enhance the effective linear coupling induced by the broken order, shifting the dome’s maximum into the ordered phase. Our theory quantitatively reproduces the three-dimensional experimental phase diagram in the space of carrier density, distance from the quantum critical point and temperature, and allows us to estimate microscopic parameters from the experimental data.

Original languageEnglish
Article number82
Journalnpj Quantum Materials
Volume10
Issue number1
DOIs
StatePublished - Dec 2025

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