Local dynamical heterogeneity in glass formers

dc.contributor.author

Biroli, Giulio

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Charbonneau, Patrick

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Folena, Giampaolo

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Hu, Yi

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Zamponi, Francesco

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2022-05-02T17:28:04Z

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2022-05-02T17:28:04Z

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2021-09-24

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2022-05-02T17:28:03Z

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We study the local dynamical fluctuations in glass-forming models of particles embedded in $d$-dimensional space, in the mean-field limit of $d\to\infty$. Our analytical calculation reveals that single-particle observables, such as squared particle displacements, display divergent fluctuations around the dynamical (or mode-coupling) transition, due to the emergence of nontrivial correlations between displacements along different directions. This effect notably gives rise to a divergent non-Gaussian parameter, $\alpha_2$. The $d\to\infty$ local dynamics therefore becomes quite rich upon approaching the glass transition. The finite-$d$ remnant of this phenomenon further provides a long sought-after, first-principle explanation for the growth of $\alpha_2$ around the glass transition that is \emph{not based on multi-particle correlations}.

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https://hdl.handle.net/10161/24991

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cond-mat.dis-nn

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cond-mat.dis-nn

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cond-mat.soft

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Local dynamical heterogeneity in glass formers

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Journal article

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Charbonneau, Patrick|0000-0001-7174-0821

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Duke

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Trinity College of Arts & Sciences

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Chemistry

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Physics

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