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January 23, 2026The Journal of Chemical Physics0 citations

Shape-specific fluctuations of an active colloidal interface

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ASArvin Gopal SubramaniamIndian Institute of Technology MadrasTBTirthankar BanerjeeRSR. K. SinghIndian Institute of Technology Patna

Key Points

  • The study aims to explore the dynamics and fluctuations of active colloidal interfaces with a focus on shape and self-propulsion effects.
  • Investigated a class of active interfaces formed by self-propelled colloids
  • Enumerated steady-state shapes across parameter space
  • Analyzed height and orientational fluctuations using scaling laws
  • Identified C-shaped topology with finite curvature in a specific regime
  • Height fluctuations obey Family–Vicsek scaling with novel exponents
  • Orientational fluctuations show a surprising negative roughness exponent, indicating smoothness with increasing size

Abstract

Motivated by a recently synthesizable class of active interfaces formed by linked self-propelled colloids, we investigate the dynamics and fluctuations of a phoretically (chemically) interacting active interface with roto-translational coupling. We enumerate all steady-state shapes of the interface across parameter space and identify a regime where the interface acquires a finite curvature, leading to a characteristic “C-shaped” topology, along with persistent self-propulsion. In this phase, the interface height fluctuations obey Family–Vicsek scaling but with novel exponents: a dynamic exponent zh ≈ 0.5, a roughness exponent αh ≈ 0.9, and a super-ballistic growth exponent βh ≈ 1.7. In contrast, the orientational fluctuations of the colloidal monomers exhibit a negative roughness exponent, reflecting a surprising smoothness law, where steady-state fluctuations diminish with increasing system size. Together, these findings point toward a unique non-equilibrium universality class associated with self-propelled interfaces of non-standard shape.

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Cite This Study

Subramaniam et al. (2026) studied this question.

synapsesocial.com/papers/69730f59c8125b09b0d1f31chttps://doi.org/10.1063/5.0301699
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