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Data for "Finite Disorder Critical Point in the Brittle-to-Ductile Transition of Amorphous Solids in the Presence of Particle Pinning" https://doi.org/10.1103/nvkn-tmwq

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Figshare2025-10-15 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Data_for_PRL_publication_2025_https_doi_org_10_1103_nvkn-tmwq_titled_Finite_Disorder_Critical_Point_in_the_Brittle-to-Ductile_Transition_of_Amorphous_Solids_in_the_Presence_of_Particle_Pinning/30366025
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Using particle based simulation of a model glass former, we demonstrate a transition from brittle yielding to ductile yielding in amorphous solids by introducing quenched disorder in the form of randomly pinned particles. The well-annealed samples, which exhibit brittle yielding, undergo a transition to increasingly ductile yielding with increasing pinning concentrations while exhibiting an enhanced stress overshoot. Extensive finite size analysis is performed to demonstrate the critical nature of the transition at a finite pinning concentration and the various scaling exponents obtained are found to be in good agreement with the reported values for random field Ising model universality class. Finally, we establish a connection between inherent disorder strength of amorphous solids which controls the nature of the yielding and quenched disorder strength due to particle pinning.
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2025-10-15
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