A two-channel Allen-Dynes framework delivers blind Tc predictions with R²=0.96 for 19 materials over 0.4-250 K using phonon and spin-fluctuation channels extracted from data, while showing that the Peotta-Torma geometric superfluid weight correlates with topology rather than pairing strength.
Qureshiet al., Inelastic neutron-scattering measure- ments of incommensurate magnetic excitations on super- conducting LiFeAs single crystals, Phys
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Two-Channel Allen-Dynes Framework for Superconducting Critical Temperatures: Blind Predictions Across Five Orders of Magnitude and a Quantum-Metric No-Go Result
A two-channel Allen-Dynes framework delivers blind Tc predictions with R²=0.96 for 19 materials over 0.4-250 K using phonon and spin-fluctuation channels extracted from data, while showing that the Peotta-Torma geometric superfluid weight correlates with topology rather than pairing strength.