activity
20112019
most citedMembrane penetration and trapping of an active particle

33 citations · 84 across the 4 of their papers we have counts for

collaborators

6 papers

cond-mat.soft201911 cited

Classical density functional theory for a two-dimensional isotropic ferrogel model with labeled particles

Segun Goh, René Wittmann, Andreas M. Menzel +1

In this study, we formulate a density functional theory (DFT) for systems of labeled particles, considering a two-dimensional bead-spring lattice with a magnetic dipole on every be…

cond-mat.soft201933 cited

Membrane penetration and trapping of an active particle

Abdallah Daddi-Moussa-Ider, Segun Goh, Benno Liebchen +6

The interaction between nano- or micro-sized particles and cell membranes is of crucial importance in many biological and biomedical applications such as drug and gene delivery to…

cond-mat.soft2018

Dynamics in a one-dimensional ferrogel model: relaxation, pairing, shock-wave propagation

Segun Goh, Andreas M. Menzel, Hartmut Löwen

Ferrogels are smart soft materials, consisting of a polymeric network and embedded magnetic particles. Novel phenomena, such as the variation of the overall mechanical properties b…

physics.flu-dyn2018

State diagram of a three-sphere microswimmer in a channel

Abdallah Daddi-Moussa-Ider, Maciej Lisicki, Arnold J. T. M. Mathijssen +5

Geometric confinements are frequently encountered in soft matter systems and in particular significantly alter the dynamics of swimming microorganisms in viscous media. Surface-rel…

physics.soc-ph201115 cited

Master equation approach to the intra-urban passenger flow and application to the Metropolitan Seoul Subway system

Keumsook Lee, Segun Goh, Jong Soo Park +2

The master equation approach is proposed to describe the evolution of passengers in a subway system. With the transition rate constructed from simple geographical consideration, th…

cond-mat.stat-mech201125 cited

Emergence of skew distributions in controlled growth processes

Segun Goh, H. W. Kwon, M. Y. Choi +1

Starting from a master equation, we derive the evolution equation for the size distribution of elements in an evolving system, where each element can grow, divide into two, and pro…