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D-wave superconductivity induced by short-range antiferromagnetic correlations in the two-dimensional Kondo lattice model

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arxiv 1204.1434 v2 pith:EEYOHRPE submitted 2012-04-06 cond-mat.str-el cond-mat.supr-con

D-wave superconductivity induced by short-range antiferromagnetic correlations in the two-dimensional Kondo lattice model

classification cond-mat.str-el cond-mat.supr-con
keywords kondoantiferromagneticd-wavestatecorrelationsfermionheavyheisenberg
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The possible heavy fermion superconductivity is carefully reexamined in the two-dimensional Kondo lattice model with an antiferromagnetic Heisenberg superexchange between local magnetic moments. In order to establish an effective mean field theory in the limit of the paramagnetic heavy Fermi liquid and near the half-filling case, we find that the spinon singlet pairing from the local antiferromagnetic short-range correlations can reduce the ground state energy substantially. In the presence of the Kondo screening effect, the Cooper pairs between the conduction electrons is induced. Depending on the ratio of the Heisenberg and the Kondo exchange couplings, the resulting superconducting state is characterized by either a d-wave nodal or d-wave nodeless state, and a continuous phase transition exists between these two states. These results are related to some quasi-two dimensional heary fermion superconductors.

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  1. Fermi surface change and $d$-wave superconductivity in the square lattice Kondo-Heisenberg model

    cond-mat.str-el 2026-06 unverdicted novelty 5.0

    Neural network quantum states applied to the doped Kondo-Heisenberg model on the square lattice find Fermi-volume reconstruction and coexisting d-wave superconductivity between weak- and strong-Kondo regimes.