Abstract
The interplay of topology with magnetism in Weyl semimetals recently arose to a vanguard topic, because of novel physical scenarios with anomalous transport properties. Here, we address the charge dynamics of the noncentrosymmetric and ferromagnetic (TC ~ 15 K) PrAlGe material and discover that it harbours electronic correlations, which are reflected in a sizeable reduction of the Fermi velocity with respect to the bare band value at low temperatures (T). At T < TC, the optical response registers a band reconstruction, which additionally causes a reshuffling of spectral weight, pertinent to the electronic environment of the type-I Weyl fermions and tracing the remarkable anomalous Hall conductivity (AHC). With the support of first-principles calculations, we provide evidence for the intimate relationship between a topological resonance of the absorption spectrum and the progressively enhanced occupation of non-trivial states with large Berry curvatures, a requirement for AHC.
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CITATION STYLE
Yang, R., Corasaniti, M., Le, C. C., Yue, C., Hu, Z., Hu, J. P., … Degiorgi, L. (2022). Charge dynamics of a noncentrosymmetric magnetic Weyl semimetal. Npj Quantum Materials, 7(1). https://doi.org/10.1038/s41535-022-00507-w
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