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Low-density superconductivity in SrTiO$_3$ bounded by the adiabatic criterion

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arxiv 2106.10802 v1 pith:U2E2AMJW submitted 2021-06-21 cond-mat.supr-con

classification cond-mat.supr-con
keywords superconductingsuperconductivitysrtioacrossadiabaticdensitiesdomeenergy
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abstract

SrTiO$_3$ exhibits superconductivity for carrier densities $10^{19}-10^{21}$ cm$^{-3}$. Across this range, the Fermi level traverses a number of vibrational modes in the system, making it ideal for studying dilute superconductivity. We use high-resolution planar-tunneling spectroscopy to probe chemically-doped SrTiO$_3$ across the superconducting dome. The over-doped superconducting boundary aligns, with surprising precision, to the Fermi energy crossing the Debye energy. Superconductivity emerges with decreasing density, maintaining throughout the Bardeen-Cooper-Schrieffer (BCS) gap to transition-temperature ratio, despite being in the anti-adiabatic regime. At lowest superconducting densities, the lone remaining adiabatic phonon van Hove singularity is the soft transverse-optic mode, associated with the ferroelectric instability. We suggest a scenario for pairing mediated by this mode in the presence of spin-orbit coupling, which naturally accounts for the superconducting dome and BCS ratio.

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  1. Self-consistent GW theory for superconductivity in SrTiO3 models

    cond-mat.supr-con 2026-07 conditional novelty 7.0 of 10

    Full self-consistent GW calculations of polar SrTiO3 models show the dilute pairing-onset temperature survives at a finite scale only when the full momentum/frequency kernel is kept, while truncation or Fermi-surface ...

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