Fluidization induced by magnetic interactions in confined active matter

Musacchio M, Felber M, Paoluzzi M, Gnoli A, Puglisi A, Angelani L. 2026. Fluidization induced by magnetic interactions in confined active matter. Physical Review E. 113(5), 055413.

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Journal Article | Published | English

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Author
Musacchio, Marco; Felber, MarkusISTA; Paoluzzi, Matteo; Gnoli, Andrea; Puglisi, Andrea; Angelani, Luca
Abstract
We investigate magnetic active matter in confined geometries using both experiments with magnetic toy robots, Hexbugs, and simulations of elongated magnetic active Brownian particles in circular domains. Standard active particles tend to accumulate at boundaries, forming clusters even at relatively low densities. In the presence of magnetic interactions, we provide evidence for a effect that inhibits clustering and shifts its onset to higher packing fractions. Moreover, magnetic dipolar interactions give rise to collective behaviors such as train-like formations, rotating pairs, and rotating clusters.
Publishing Year
Date Published
2026-05-18
Journal Title
Physical Review E
Publisher
American Physical Society
Acknowledgement
The authors acknowledge discussions with Lorenzo Caprini. A.G., M.P., and A.P. acknowledge funding from the ItalianMinistero dell’Università e della Ricerca under the program PRIN 2022 (“Re-ranking of the final lists”), Grants No. 2022KWTEB7 with CUP No. B53C24006470006. L.A. acknowledges funding from the ItalianMinistero dell’Università e della Ricerca under the program PRIN 2020, Grant No. 2020PFCXPE.
Volume
113
Issue
5
Article Number
055413
ISSN
eISSN
IST-REx-ID

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Musacchio M, Felber M, Paoluzzi M, Gnoli A, Puglisi A, Angelani L. Fluidization induced by magnetic interactions in confined active matter. Physical Review E. 2026;113(5). doi:10.1103/hylm-ljlf
Musacchio, M., Felber, M., Paoluzzi, M., Gnoli, A., Puglisi, A., & Angelani, L. (2026). Fluidization induced by magnetic interactions in confined active matter. Physical Review E. American Physical Society. https://doi.org/10.1103/hylm-ljlf
Musacchio, Marco, Markus Felber, Matteo Paoluzzi, Andrea Gnoli, Andrea Puglisi, and Luca Angelani. “Fluidization Induced by Magnetic Interactions in Confined Active Matter.” Physical Review E. American Physical Society, 2026. https://doi.org/10.1103/hylm-ljlf.
M. Musacchio, M. Felber, M. Paoluzzi, A. Gnoli, A. Puglisi, and L. Angelani, “Fluidization induced by magnetic interactions in confined active matter,” Physical Review E, vol. 113, no. 5. American Physical Society, 2026.
Musacchio M, Felber M, Paoluzzi M, Gnoli A, Puglisi A, Angelani L. 2026. Fluidization induced by magnetic interactions in confined active matter. Physical Review E. 113(5), 055413.
Musacchio, Marco, et al. “Fluidization Induced by Magnetic Interactions in Confined Active Matter.” Physical Review E, vol. 113, no. 5, 055413, American Physical Society, 2026, doi:10.1103/hylm-ljlf.
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2026-07-14
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