Bulletin of the American Physical Society
APS March Meeting 2020
Volume 65, Number 1
Monday–Friday, March 2–6, 2020; Denver, Colorado
Session A45: Understanding Glasses and Disordered Systems Through Computational Models I
8:00 AM–11:00 AM,
Monday, March 2, 2020
Room: 706
Sponsoring
Units:
DCOMP DSOFT GSNP DPOLY
Chair: Lisa Manning, Syracuse University
Abstract: A45.00002 : Yielding of Ultrastable Computer Glasses
Presenter:
Misaki Ozawa
(Ecole Normale Superieure)
Authors:
Misaki Ozawa
(Ecole Normale Superieure)
Ludovic Berthier
(Universite Montpellier)
Giulio Biroli
(Ecole Normale Superieure)
Alberto Rosso
(Universite Paris-Sud)
Gilles Tarjus
(Sorbonne Universite)
Murari Singh
(Universite Montpellier)
Wei-Ting Yeh
(Nagoya University)
Kunimasa Miyazaki
(Nagoya University)
Takeshi Kawasaki
(Nagoya University)
We study mechanical yielding of ultrastable computer glasses generated by optimized swap Monte-Carlo simulations for polydisperse particles [1,2] as well as more realistic multi-component metallic glass models [3]. We observe brittle yielding associated with a sharp system-spanning shearband in various rheological settings, such as uniform shear and oscillatory deformation in two and three dimensions [4,5,6]. The observed behaviors are qualitatively different from the standard computer glasses that have been studied previously. Thus, our computational scheme opens up new opportunities to investigate the mechanical behaviors of metallic glasses in experimentally relevant conditions. As an application, we numerically test the scenario of shearband nucleation by artificially inserting a soft spot into a stable glass sample. We argue that brittle yielding in macroscopic samples is triggered by rare droplets of the soft spot [4].
[1] Berthier, Coslovich, Ninarello, and Ozawa, Phys. Rev. Lett., 116, 238002 (2018)
[2] Ozawa, Berthier, Biroli, Rosso, and Tarjus, PNAS, 115, 6656 (2018)
[3] Parmar, Ozawa, and Berthier
[4] Ozawa, Berthier, Biroli, and Tarjus
[5] Singh, Ozawa, and Berthier
[6] Yeh, Ozawa, Miyazaki, Kawasaki, and Berthier
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