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Signatures of the Chiral Anomaly in Phonon Dynamics
P Rinkel1, P L S Lopes1, Ion Garate1
1Département de Physique, Institut Quantique and Regroupement Québécois sur les Matériaux de Pointe, Université de Sherbrooke, Sherbrooke, Québec, Canada J1K 2R1.
The chiral anomaly, originating in physics, significantly impacts A1 phonons in enantiomorphic Weyl semimetals (WSM). This leads to unique magnetic-field-induced phonon resonances and observable anomalies in material properties.
Area of Science:
- Condensed Matter Physics
- Materials Science
- Solid-State Physics
Background:
- The chiral anomaly, a concept from high-energy physics, has recently been explored in materials science, particularly in Weyl semimetals (WSM).
- Previous research has primarily focused on investigating the chiral anomaly through electronic phenomena in WSM.
Purpose of the Study:
- To investigate the impact of the chiral anomaly on the A1 phonons in enantiomorphic Weyl semimetals.
- To explore novel phenomena arising from the chiral anomaly in the phononic sector of these materials.
Main Methods:
- Theoretical analysis of the chiral anomaly's influence on phonon properties in enantiomorphic WSM.
- Examination of magnetic-field-induced effects on the effective phonon charge.
- Analysis of resulting anomalies in phonon dispersion, optical reflectivity, and Raman scattering spectra.
Main Results:
- The chiral anomaly significantly influences the A1 phonons in enantiomorphic Weyl semimetals.
- A unique magnetic-field-induced resonance is observed in the effective phonon charge due to the chiral anomaly.
- Anomalies in phonon dispersion, optical reflectivity, and Raman scattering are linked to this phononic chiral anomaly.
Conclusions:
- The chiral anomaly has a substantial, previously unexplored, effect on the phononic properties of enantiomorphic Weyl semimetals.
- This work opens new avenues for probing the chiral anomaly through phononic excitations and their interactions with magnetic fields.
- The findings suggest potential applications in novel optical and electronic devices based on WSM.
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