Further testing the validity of generalized heterogeneous-elasticity theory for low-frequency excitations in structural glasses
Disordered Systems and Neural Networks
2026-05-13 v3
Abstract
We summarize the salient features of our theory of non-phononic vibrational excitations in glasses [W. Schirmacher et al., Nature Comm. 15, 3107 (2024)]. Next, we provide further evidence of the non-universality of the scaling of the non-phononic vibrational density of states (DoS), and the existence of an important class of non-phononic excitations in glasses, which we call defect states. These modes are induced by frozen-in stresses and can be classified as quasi-localized. Our results suggest that the commonly observed low-frequency scaling of the non-phononic vibrational density of states is highly dependent on technical aspects of the molecular dynamics simulations employed to compute the DoS.
Keywords
Cite
@article{arxiv.2509.04988,
title = {Further testing the validity of generalized heterogeneous-elasticity theory for low-frequency excitations in structural glasses},
author = {Walter Schirmacher and Matteo Paoluzzi and Felix Cosmin Mocanu and Dmytro Khomenko and Grzegorz Szamel and Francesco Zamponi and Giancarlo Ruocco},
journal= {arXiv preprint arXiv:2509.04988},
year = {2026}
}
Comments
4 pages, 2 figures