activity
20142024
most citedSingle-file escape of colloidal particles from microfluidic channels

51 citations · 102 across the 6 of their papers we have counts for

collaborators

6 papers

cond-mat.soft20241 cited

Universal time and length scales of polar active polymer melts

Mattia Alberto Ubertini, Emanuele Locatelli, Angelo Rosa

We present an in-depth multi-scale analysis of the conformations and dynamics of polar active polymers, comparing very dilute and very dense conditions. We unveil characteristic le…

cond-mat.soft2023

Conformation and dynamics of partially active linear polymers

Marin Vatin, Sumanta Kundu, Emanuele Locatelli

We perform numerical simulations of isolated, partially active polymers, driven out-of-equilibrium by a fraction of their monomers. We show that, if the active beads are all gather…

cond-mat.soft2023

Self-organized states of solutions of active ring polymers in bulk and under confinement

Juan Pablo Miranda-López, Emanuele Locatelli, Chantal Valeriani

In the presented work we study, by means of numerical simulations, the behaviour of a suspension of active ring polymers in the bulk and under lateral confinement. When changing th…

cond-mat.soft201615 cited

Multiblob coarse-graining for mixtures of long polymers and soft colloids

Emanuele Locatelli, Barbara Capone, Christos N. Likos

Soft nanocomposites represent both a theoretical and an experimental challenge due to the high number of the microscopic constituents that strongly influence the behaviour of the s…

cond-mat.soft201651 cited

Single-file escape of colloidal particles from microfluidic channels

Emanuele Locatelli, Matteo Pierno, Fulvio Baldovin +3

Single-file diffusion is a ubiquitous physical process exploited by living and synthetic systems to exchange molecules with their environment. It is paramount quantifying the escap…

cond-mat.stat-mech201435 cited

Active Brownian Particles Escaping a Channel in Single File

Emanuele Locatelli, Fulvio Baldovin, Enzo Orlandini +1

Active particles may happen to be confined in channels so narrow that they cannot overtake each other (Single File conditions). This interesting situation reveals nontrivial physic…