26–31 May 2024
Western University
America/Toronto timezone
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(G*) Dynamics of an intruder moving through a two-dimensional granular medium

27 May 2024, 17:30
15m
PAB Rm 106 (cap. 96) (Physics & Astronomy Bldg., Western U.)

PAB Rm 106 (cap. 96)

Physics & Astronomy Bldg., Western U.

Oral Competition (Graduate Student) / Compétition orale (Étudiant(e) du 2e ou 3e cycle) Condensed Matter and Materials Physics / Physique de la matière condensée et matériaux (DCMMP-DPMCM) (DCMMP) M3-6 Soft Condensed Matter III | Matière condensée molle III (DPMCM)

Speaker

Marzuk Gazi

Description

Granular systems can be great analogies to the molecular structures of materials and introducing an intruder to the system can provide novel insight into their dynamics. Here, we study the response of a disordered bi-disperse two-dimensional aggregate of oil droplets to a moving ferrofluid droplet which acts as a controlled intruder. The frictionless and cohesive oil droplets form a compact two dimensional disordered aggregate. The mobile ferrofluid droplet is controlled with a localised magnetic field and as the intruder is moved through the aggregate, the intruder forces rearrangements within the aggregate. The speed of the intruder, disorder of the 2D aggregate, and the adhesion between the oil droplets is controlled, and we probe the extent of the rearrangements caused by the intruder as it moves through the aggregate.

Keyword-1 Granular Glass
Keyword-2 Cooperative Rearrangements
Keyword-3 Intruder

Author

Marzuk Gazi

Co-authors

James Forrest (University of Waterloo) Johnathan Hoggarth Prof. Kari Dalnoki-Veress (McMaster University)

Presentation materials

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