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首页> 外文期刊>Physica status solidi, B. Basic research >Pairing by Kondo interaction and magnetic phases in the Anderson-Kondo lattice model: Statistically consistent renormalized mean-field theory
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Pairing by Kondo interaction and magnetic phases in the Anderson-Kondo lattice model: Statistically consistent renormalized mean-field theory

机译:在安德森-近藤晶格模型中通过近藤相互作用和磁相配对:统计一致的重归一化均场理论

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摘要

We start from the Anderson-Kondo lattice model derived by us earlier, in which both the Kondo interaction and the residual hybridization processes have been included in a systematic manner. In the present work we discuss a fairly complete phase diagram including magnetic, pure superconducting (SC), and coexistent antiferromagnetic (AF)-SC phases. Both intra- and interatomic hybridization cases have been considered, separately. The Kondo insulating state with completely compensated magnetic moments has been obtained as a reference state, from which either AF or SC or mixed AF+SC phases evolve when the metallic state becomes stable. The SC pairing is induced mainly by the Kondo interaction. The method of approach we use is the so-called statistically consistent renormalized mean-field theory (SC-RMFT), encompassing essential corrections to the standard Gutzwiller-ansatz approach.
机译:我们从我们先前推导的Anderson-Kondo格模型开始,其中系统地包括了Kondo相互作用和残基杂交过程。在当前的工作中,我们讨论一个相当完整的相图,包括磁性相,纯超导(SC)和共存反铁磁(AF)-SC相。原子内杂交和原子间杂交均已分别考虑。已经获得具有完全补偿的磁矩的近藤绝缘状态作为参考状态,当金属状态变得稳定时,AF或SC或混合的AF + SC相从中发展。 SC配对主要由近藤相互作用诱导。我们使用的方法是所谓的统计一致的重归一化平均场理论(SC-RMFT),其中包括对标准Gutzwiller-ansatz方法的必要修正。

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