On the superposition principle and non-linear response in spin glasses
Abstract
The extended principle of superposition has been a touchstone of spin glass dynamics for almost thirty years. The Uppsala group has demonstrated its validity for the metallic spin glass, CuMn, for magnetic fields up to 10 Oe at the reduced temperature , where is the spin glass condensation temperature. For Oe, they observe a departure from linear response which they ascribe to the development of non-linear dynamics. The thrust of this paper is to develop a microscopic origin for this behavior by focusing on the time development of the spin glass correlation length, . Here, is the time after changes, and is the time from the quench for to the working temperature until changes. We connect the growth of to the barrier heights that set the dynamics. The effect of on the magnitude of is responsible for affecting differently the two dynamical protocols associated with turning off (TRM, or thermoremanent magnetization) or on (ZFC, or zero field-cooled magnetization). In this paper, we display the difference between the zero-field cooled and the thermoremanent magnetization correlation lengths as increases, both experimentally and through numerical simulations, corresponding to the violation of the extended principle of superposition in line with the finding of the Uppsala Group.
Keywords
Cite
@article{arxiv.2207.10640,
title = {On the superposition principle and non-linear response in spin glasses},
author = {I. Paga and Q. Zhai and M. Baity-Jesi and E. Calore and A. Cruz and C. Cummings and L. A. Fernandez and J. M. Gil-Narvion and I. Gonzalez-Adalid Pemartin and A. Gordillo-Guerrero and D. Iñiguez and G. G. Kenning and A. Maiorano and E. Marinari and V. Martin-Mayor and J. Moreno-Gordo and A. Muñoz-Sudupe and D. Navarro and R. L. Orbach and G. Parisi and S. Perez-Gaviro and F. Ricci-Tersenghi and J. J. Ruiz-Lorenzo and S. F. Schifano and D. L. Schlagel and B. Seoane and A. Tarancon and D. Yllanes},
journal= {arXiv preprint arXiv:2207.10640},
year = {2023}
}
Comments
23 pages and 18 figures