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Magnetic susceptibility of topological semimetals

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arxiv 1903.12208 v2 pith:3KG55YU5 submitted 2019-03-28 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords magneticsusceptibilitysemimetalsresultstopologicalchemicalconcerningdependences
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We give a review of theoretical and experimental results concerning the magnetic susceptibility of the Weyl, Dirac, and nodal-line semimetals. In particular, dependences of the susceptibility on the chemical potential, temperature, and magnitude of the magnetic field are discussed. The presented results show that the specific features of the magnetic susceptibility can serve as a hallmark of the topological semimetals, and hence magnetic measurements can be useful in investigating these materials.

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  1. Effects of the Hubbard interaction on the quantum metric

    cond-mat.str-el 2024-12 conditional novelty 6.0 of 10

    On a fermionic Creutz ladder, the dressed quantum metric matches exact diagonalization results better than the generalized quantum metric, and Hubbard interactions suppress the quantum metric.

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