Breathing mode in Kagome lattices induces odd-frequency spin-singlet dynamical Cooper pairs from conventional s-wave superconductivity.
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DQMC simulations of the tunable t'/t Hubbard model show suppression of nearest-neighbor antiferromagnetic correlations, enhancement of next-nearest-neighbor correlations linked to a low-T specific heat peak, and U-driven shifts in crossover points.
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Breathing mode inducing dynamical pairing in Kagome materials
Breathing mode in Kagome lattices induces odd-frequency spin-singlet dynamical Cooper pairs from conventional s-wave superconductivity.
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Interplay of magnetic and thermodynamic responses in the kagome-triangular system
DQMC simulations of the tunable t'/t Hubbard model show suppression of nearest-neighbor antiferromagnetic correlations, enhancement of next-nearest-neighbor correlations linked to a low-T specific heat peak, and U-driven shifts in crossover points.