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Updated: May 4, 2026

Biophysical Characterization of Flagellar Motor Functions
Published on: January 18, 2017
Flagellar dynamics of a connected chain of active, polar, Brownian particles
Raghunath Chelakkot1, Arvind Gopinath, L Mahadevan
1Martin Fisher School of Physics, Brandeis University, , Waltham, MA 02453, USA.
Abstract:
We show that active, self-propelled particles that are connected together to form a single chain that is anchored at one end can produce the graceful beating motions of flagella. Changing the boundary condition from a clamp to a pivot at the anchor leads to steadily rotating tight coils. Strong noise in the system disrupts the regularity of the oscillations. We use a combination of detailed numerical simulations, mean-field scaling analysis and first passage time theory to characterize the phase diagram as a function of the filament length, passive elasticity, propulsion force and noise. Our study suggests minimal experimental tests for the onset of oscillations in an active polar chain.
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