Importance of Non-Adiabatic Effects on Kohn Anomalies in 1D metals
Materials Science
2025-12-22 v1
Abstract
Kohn anomalies are kinks or dips in phonon dispersions which are pronounced in low-dimensional materials. We investigate the effects of non-adiabatic phonon self-energy on Kohn anomalies in one-dimensional metals by developing a model that analyzes how the adiabatic phonon frequency, electron effective mass, and electron-phonon coupling strength influence phonon mode renormalization. We introduce an electron-phonon coupling strength threshold for low-temperature system instability, providing experimentalists with a tool to predict them. Finally, we validate the predictions of our model against first-principles calculations on a 4 {\AA}-diameter carbon nanotube.
Keywords
Cite
@article{arxiv.2506.18704,
title = {Importance of Non-Adiabatic Effects on Kohn Anomalies in 1D metals},
author = {Enrico Marazzi and Samuel Poncé and Jean-Christophe Charlier and Gian-Marco Rignanese},
journal= {arXiv preprint arXiv:2506.18704},
year = {2025}
}
Comments
4 pages article, 12 pages Supplemetary Materials, 12 figures total