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Titlebook: Strongly Correlated Fermi Systems; A New State of Matte Miron Amusia,Vasily Shaginyan Book 2020 Springer Nature Switzerland AG 2020 New Sta

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The Universal Behavior of the Archetypical Heavy-Fermion Metals ,ermodynamic and transport properties are formed by quasiparticles, while the dependence of the effective mass on temperature, number density, magnetic fields, etc gives rise to the non-Fermi liquid behavior. Our theoretical study of the heat capacity, magnetization, energy scales, the longitudinal m
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Asymmetric Conductivity of Strongly Correlated Compounds,t in LFL, this dramatically changes transport properties of HF metals, particularly, the differential conductivity becomes asymmetric. As it is demonstrated in Sect. ., Fermi quasiparticles can behave as a Bose one. Such a state is viewed as possessing the supersymmetry (SUSY) that interchanges boso
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0081-3869 rrelated Fermi systems.Explains numerous experimental resultThis book focuses on the topological fermion condensation quantum phase transition (FCQPT), a phenomenon that reveals the complex behavior of all strongly correlated Fermi systems, such as heavy fermion metals, quantum spin liquids, quasicr
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