Local plastic response and slow heterogeneous dynamics of supercooled liquids
We demonstrate, via numerical simulations, that the relaxation dynamics of supercooled liquids correlates well with a plastic length scale measuring a particle's response to impulsive localized perturbations and weakly to measures of local elasticity. We find that the particle averaged plastic...
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sg-ntu-dr.10356-1612702023-02-28T20:11:27Z Local plastic response and slow heterogeneous dynamics of supercooled liquids Li, Yan-Wei Yao, Yugui Ciamarra, Massimo Pica School of Physical and Mathematical Sciences CNRS@CREATE LTD Science::Physics Heterogeneous Dynamics Length Scale We demonstrate, via numerical simulations, that the relaxation dynamics of supercooled liquids correlates well with a plastic length scale measuring a particle's response to impulsive localized perturbations and weakly to measures of local elasticity. We find that the particle averaged plastic length scale vanishes linearly in temperature and controls the super-Arrhenius temperature dependence of the relaxation time. Furthermore, we show that the plastic length scale of individual particles correlates with their typical displacement at the relaxation time. In contrast, the local elastic response only correlates with the dynamics on the vibrational timescale. Ministry of Education (MOE) Published version Y.-W. L. acknowledges support of the start-up funding of Beijing Institute of Technology and support from the National Natural Science Foundation (NSF) of China (Grant No. 12105012). Y. Y. is supported by the NSF of China (Grants No. 11734003 and No. 12061131002). M. P. C. acknowledges support from the Singapore Ministry of Education through the Singapore Academic Research Fund (MOE2019-T1-001-03 and MOE2019-T1-001-22). 2022-08-23T02:57:11Z 2022-08-23T02:57:11Z 2022 Journal Article Li, Y., Yao, Y. & Ciamarra, M. P. (2022). Local plastic response and slow heterogeneous dynamics of supercooled liquids. Physical Review Letters, 128(25), 258001-1-258001-6. https://dx.doi.org/10.1103/PhysRevLett.128.258001 0031-9007 https://hdl.handle.net/10356/161270 10.1103/PhysRevLett.128.258001 35802437 2-s2.0-85133500369 25 128 258001-1 258001-6 en MOE2019-T1-001-03 MOE2019-T1-001-22 Physical Review Letters © 2022 American Physical Society. All rights reserved. This paper was published in Physical Review Letters and is made available with permission of American Physical Society. application/pdf |
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Science::Physics Heterogeneous Dynamics Length Scale Li, Yan-Wei Yao, Yugui Ciamarra, Massimo Pica Local plastic response and slow heterogeneous dynamics of supercooled liquids |
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We demonstrate, via numerical simulations, that the relaxation dynamics of supercooled liquids correlates well with a plastic length scale measuring a particle's response to impulsive localized perturbations and weakly to measures of local elasticity. We find that the particle averaged plastic length scale vanishes linearly in temperature and controls the super-Arrhenius temperature dependence of the relaxation time. Furthermore, we show that the plastic length scale of individual particles correlates with their typical displacement at the relaxation time. In contrast, the local elastic response only correlates with the dynamics on the vibrational timescale. |
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School of Physical and Mathematical Sciences |
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School of Physical and Mathematical Sciences Li, Yan-Wei Yao, Yugui Ciamarra, Massimo Pica |
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Article |
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Li, Yan-Wei Yao, Yugui Ciamarra, Massimo Pica |
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Li, Yan-Wei |
title |
Local plastic response and slow heterogeneous dynamics of supercooled liquids |
title_short |
Local plastic response and slow heterogeneous dynamics of supercooled liquids |
title_full |
Local plastic response and slow heterogeneous dynamics of supercooled liquids |
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Local plastic response and slow heterogeneous dynamics of supercooled liquids |
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Local plastic response and slow heterogeneous dynamics of supercooled liquids |
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local plastic response and slow heterogeneous dynamics of supercooled liquids |
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2022 |
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https://hdl.handle.net/10356/161270 |
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