We study fire-ant columns, an active version of passive granular columns, and find that, despite the inherent activity of the ants and their natural tendency to rearrange, the ants develop force-chain structures that help support the weight of the column. Hence, the apparent mass at the bottom of the column saturates with added mass in a Janssen-like fashion, reminiscent of what is seen in passive-grain columns in wide containers. Activityinduced rearrangements within the column, however, lead to changes in the force-chain structure that slightly reduce the supportive nature of the force-chains over time and to fluctuations in the pressure at the bottom of the column that scale like the law of large numbers. We capture the experimental results in simulations that include not only friction with the walls, but also a fluctuating force that introduces activity and that effectively affects the force-chain structure of the ant collective.
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School of Physics, Georgia Institute of Technology, Atlanta,GA,30332, United States
Department of Condensed Matter Physics, University of Barcelona, Barcelona,08028, SpainSchool of Physics, Georgia Institute of Technology, Atlanta,GA,30332, United States
Anderson, Caleb J.
Gibson, Pryor A.
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Department of Mathematics and Physics, North Carolina Central University, Durham,NC,27707, United StatesSchool of Physics, Georgia Institute of Technology, Atlanta,GA,30332, United States
Gibson, Pryor A.
Fernandez-Nieves, Alberto
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School of Physics, Georgia Institute of Technology, Atlanta,GA,30332, United States
Department of Condensed Matter Physics, University of Barcelona, Barcelona,08028, Spain
ICREA-Institució Catalana de Recerca i Estudis Avançats, Barcelona,08010, Spain
Institute for Complex Systems (UBICS), University of Barcelona, Barcelona,08028, SpainSchool of Physics, Georgia Institute of Technology, Atlanta,GA,30332, United States