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Effects of crowding and enzyme-driven active fluctuations on particle correlations in colloidal suspensions

delete2026-04-02
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PRE
AI
Z
Zaidi, Syed Shuja Hasan
J
Jaiswal, Prabhat K.
DOI:10.1103/rrl4-nxmydelete
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Abstract

Abstract

En 中文
We investigated the correlation dynamics of colloidal particles in crowded, aqueous, and quasi-twodimensional environments. Using optical microscopy, we analyzed variations in two-particle displacement and direction correlations, estimating their respective ranges of influence. Our results show that microscopic colloidal particles significantly impact the dynamics of their neighbors, with the strength of correlations diminishing with increasing distance, following a power-law decay. Increasing the particle area fraction enhances these correlation ranges. Introducing localized active fluctuations via enzyme-substrate reactions extends these ranges even further. We performed overdamped Langevin dynamics simulations, which qualitatively supported our experimental findings. This study advances our understanding of active matter systems by revealing how crowding and enzyme-driven active fluctuations can modulate particle correlations. These insights pave the way for improved design and control of colloidal assemblies in complex environments, with potential applications in materials science, biophysics, and nanotechnology.
Keywords:
OPTICAL TWEEZERS
PHASE-BEHAVIOR
DIFFUSION
CRYSTALS

Journal

Physical Review E cover
Physical Review E
IF:
2.4
Papers:
1.1K
Citations:
10.2W

Organization

I
indian institute of technology system (iit system)
Scholars:
9.3W
Papers: 9.9W
Citations: 93
I
indian institute of technology (iit) - gandhinagar
Scholars:
982
Papers: 799
Citations: 2
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