Not-So-Glass-Like Caging and Fluctuations of an Active Matter Model.
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2025-06
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Simple active models of matter recapitulate complex biological phenomena. The out-of-equilibrium nature of these models, however, often makes them beyond the reach of first-principle descriptions. This limitation is particularly perplexing when attempting to distinguish between different glass-forming mechanisms. We here consider a minimal active system in various spatial dimensions to identify the processes underlying their sluggish dynamics. Activity is found to markedly impact cage escape processes and critical fluctuations associated with exploring lower-dimensional caging features.
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Zheng, Mingyuan, Dmytro Khomenko and Patrick Charbonneau (2025). Not-So-Glass-Like Caging and Fluctuations of an Active Matter Model. Physical review letters, 134(22). p. 228301. 10.1103/physrevlett.134.228301 Retrieved from https://hdl.handle.net/10161/34744.
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Patrick Charbonneau
Patrick Charbonneau is Professor of Physics at Duke University. His research in soft matter and statistical physics uses theory and computer simulations to study glassy materials and frustrated systems. He also contributes to the history of science, curating projects on quantum and statistical physics as well as food history.
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