Impact of jamming criticality on low-temperature anomalies in structural glasses
Abstract
We present a novel mechanism for the anomalous behaviour of the specific heat in low-temperature amorphous solids. The analytic solution of a mean-field model belonging to the same universality class as high-dimensional glasses, the spherical perceptron, suggests that there exists a crossover temperature above which the specific heat scales linearly with temperature while below it a cubic scaling is displayed. This relies on two crucial features of the phase diagram: (i) The marginal stability of the free-energy landscape, which induces a gapless phase responsible for the emergence of a power-law scaling (ii) The vicinity of the classical jamming critical point, as the crossover temperature gets lowered when approaching it. This scenario arises from a direct study of the thermodynamics of the system in the quantum regime, where we show that, contrary to crystals, the Debye approximation does not hold.
Keywords
Cite
@article{arxiv.1811.11719,
title = {Impact of jamming criticality on low-temperature anomalies in structural glasses},
author = {Silvio Franz and Thibaud Maimbourg and Giorgio Parisi and Antonello Scardicchio},
journal= {arXiv preprint arXiv:1811.11719},
year = {2019}
}
Comments
7 pages + 38 pages SI, 5 figures