Abstract
Recent transport experiments have revealed the activation of longitudinal magnetoresistance of Weyl semimetals in the quantum limit, suggesting the breakdown of chiral anomaly in a strong magnetic field. Here we provide a general mechanism for gapping the zeroth chiral Landau levels applicable for both Dirac and Weyl semimetals. Our result shows that the zeroth Landau levels anticross when the magnetic axis is perpendicular to the Dirac/Weyl node separation and when the inverse magnetic length lB-1 is comparable to the node separation scale Δk. The induced bulk gap increases rapidly beyond a threshold field in Weyl semimetals, but has no threshold and is nonmonotonic in Dirac systems due to the crossover between lB-1>Δk and lB-1
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CITATION STYLE
Chan, C. K., & Lee, P. A. (2017). Emergence of gapped bulk and metallic side walls in the zeroth Landau level in Dirac and Weyl semimetals. Physical Review B, 96(19). https://doi.org/10.1103/PhysRevB.96.195143
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