most citedParticle-Wall Alignment Interaction and Active Brownian Diffusion Through Narrow Channels

4 citations · 4 across the 1 of their papers we have counts for

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6 papers

cond-mat.soft20264 cited

Particle-Wall Alignment Interaction and Active Brownian Diffusion Through Narrow Channels

Poulami Bag, Shubhadip Nayak, Pulak Kumar Ghosh

We numerically examine the impacts of particle-wall alignment interactions on active species diffusion through a structureless narrow two-dimensional channel. We consider particle-…

cond-mat.soft2025

Directed autonomous motion of active Janus particles induced by wall-particle alignment interactions

Poulami Bag, Tanwi Debnath, Shubhadip Nayak +1

We propose a highly efficient mechanism to rectify the motion of active particles by exploiting particle-wall alignment interactions. Through numerical simulations of active partic…

cond-mat.soft2025

Large-scale dynamics in visual quorum sensing chiral suspensions

Yuxin Zhou, Qingqing Yin, Shubhadip Nayak +4

Motility induced phase separation is an efficient aggregation mechanism of active matter, yet biological systems exhibit richer organization through communication among constituent…

cond-mat.stat-mech2025

Active Particle Diffusion in Convection Roll Arrays

Pulak Kumar Ghosh, Fabio Marchesoni, Yunyun Li +1

We numerically investigated the Brownian motion of active Janus particles in a linear array of planar counter-rotating convection rolls at high Péclet numbers. Similarly to passiv…

cond-mat.soft2025

Binary Mixtures in Linear Convection Arrays

Pulak Kumar Ghosh, Yuxin Zhou, Yunyun Li +2

We numerically investigated the dynamics of a mixture of finite-size active and passive particles in a linear array of convection rolls. The interplay of advection and steric inter…

cond-mat.soft2025

Diffusion Transients in Motility-Induced Phase Separation

Shubhadip Nayak, Poulami Bag, Pulak K. Ghosh +4

We numerically investigate normal diffusion in a two-dimensional athermal suspension of active particles undergoing motility-induced phase separation. The particles are modeled as…