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Elastic Gauge Fields in Weyl Semimetals

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arxiv 1603.02674 v1 pith:JUEVNCLN submitted 2016-03-08 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords fieldsgaugeelasticaxialweylchiralderiveexample
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We show that, as it happens in graphene, elastic deformations couple to the electronic degrees of freedom as pseudo gauge fields in Weyl semimetals. We derive the form of the elastic gauge fields in a tight-binding model hosting Weyl nodes and see that this vector electron-phonon coupling is chiral, providing an example of axial gauge fields in three dimensions. As an example of the new response functions that arise associated to these elastic gauge fields, we derive a non-zero phonon Hall viscosity for the neutral system at zero temperature. The axial nature of the fields provides a test of the chiral anomaly in high energy with three axial vector couplings.

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Cited by 2 Pith papers

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  1. When Symmetries Twist: Anomaly Inflow on Monodromy Defects

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    Monodromy defects for anomalous symmetries are defined as domain walls between symmetry generators and anomaly-induced topological orders, resulting in protected chiral edge modes and adiabatic pumping of gapless degr...

  2. Study on axial fields in the dynamically assisted Schwinger effect

    hep-ph 2025-01 conditional novelty 6.0 of 10

    A circularly polarized high-frequency wave creates an effective axial field that significantly boosts fermion pair production in the dynamically assisted Schwinger effect.

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