Article (Scientific journals)
Magnetically assisted trapping of passive colloids by active dipolar chain.
Compagnie, A; Vandewalle, Nicolas; Opsomer, Eric
2026In Physical Review. E, 113 (5-2), p. 055421
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Abstract :
[en] We investigate a trapping mechanism for passive Brownian particles based on mixtures with self-propelled dipolar colloids. Active dipoles, whose magnetic moment is oriented perpendicularly to their propulsion direction, spontaneously form dynamic chains that collapse into clusters through dipole-dipole interactions. These transient structures efficiently capture nearby passive particles, forming dense phases at relatively low global packing fractions. Using Brownian dynamics simulations, we analyze how the capture efficiency depends on the Péclet number (Pe) and dipolar interaction strength (λ). We demonstrate that an external magnetic field, applied briefly to align the active dipoles, significantly enhances trapping efficiency, with capture fractions exceeding 50% under optimal conditions. Our results reveal a nontrivial competition between activity and dipolar forces, governed by the ratio λ/Pe, and offer insights into designing self-organized trapping strategies for passive colloids.
Disciplines :
Physics
Author, co-author :
Compagnie, A ;  Heinrich-Heine-Universität, Institut für Theoretische Physik: Weiche Materie, D-40225 Düsseldorf, Germany ; University of Liège, GRASP, Institute of Physics B5a, B4000 Liège, Belgium
Vandewalle, Nicolas  ;  Université de Liège - ULiège > Département de physique > Physique statistique
Opsomer, Eric  ;  Université de Liège - ULiège > Département de physique > Physique statistique
Language :
English
Title :
Magnetically assisted trapping of passive colloids by active dipolar chain.
Publication date :
May 2026
Journal title :
Physical Review. E
ISSN :
2470-0045
eISSN :
2470-0053
Publisher :
American Physical Society (APS)
Volume :
113
Issue :
5-2
Pages :
055421
Peer reviewed :
Peer Reviewed verified by ORBi
Funders :
ULiège - Université de Liège
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since 03 July 2026

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