arXiv · 2511.10754
Anomalous resonance in Weyl semimetals: A holographic study of non-linear effects
Abstract
We consider hairy, magnetic black brane solutions to Einstein-Maxwell-Chern-Simons-dilaton theory with full back-reaction of the scalar and gauge fields and compute the time evolution with time dependent sources. The dual field theory's 't Hooft anomaly leads to long-lived current oscillations in the low temperature limit long after the electric pulse which created these modes has been switched off. We find that, generally, non-linear effects increase the decay rates of long-lived modes by a temperature dependent amount. Nonetheless, our results suggest that the life-time of time-translation symmetry breaking states can be made arbitrarily large if the temperature after the quench is sufficiently small. Experimentally this might be realizable in Weyl semimetals.
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Maximilian Gaschler, Andreas Schäfer, Sebastian Waeber. 2025-11-13. Anomalous resonance in Weyl semimetals: A holographic study of non-linear effects. https://arxiv.org/abs/2511.10754
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