Abstract
We study numerically temperature- and field-shift aging protocols on the three–dimensional (3D) Ising Edwards–Anderson (EA) spin-glass (SG) model focusing on, respectively, the temperature–chaos nature and the stability under a static field of the SG phase. The results of the latter strongly support the droplet theory which predicts the instability of the SG phase under the field. They are also discussed in relation with the experimental studies.
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