Studying the primary {\alpha}- and secondary {\beta}-relaxation process has contributed significantly to the understanding of the structure and rheology of metallic glasses. In this letter, we report on a third relaxation mechanism indicated by a maximum in the loss modulus at low temperatures, which we term {\gamma}-relaxation. Contrary to the {\alpha}- and {\beta}-relaxation mechanisms, this irreversible, low energy excitation causes a macroscopic rejuvenation, which we assign to non-affine atomic rearrangements in the matrix that are driven by thermal stresses during cooling. Observed in three different glassy alloys, the low temperature relaxation is identified as a general process in metallic glasses.
@article{arxiv.1703.09016,
title = {Gamma relaxation in bulk metallic glasses},
author = {Stefan Küchemann and Robert Maaß},
journal= {arXiv preprint arXiv:1703.09016},
year = {2017}
}
Comments
15 pages including supplementary material, 4 figures (main text) and 3 additional figures (supplementary material)