activity
20242026
most citedModeling dissipation in quantum active matter

1 citations · 1 across the 5 of their papers we have counts for

collaborators

14 papers

quant-ph2026

Quantization of the classical Mpemba effect

Jannis Melles, Hartmut Löwen, Benno Liebchen +4

The Mpemba effect refers to the counterintuitive phenomenon that an initially hot system can freeze faster than an initially warm one. Recent years have brought major advances in b…

quant-ph20261 cited

Modeling dissipation in quantum active matter

Alexander P. Antonov, Sangyun Lee, Benno Liebchen +5

Active matter is characterized by a constant influx and dissipation of energy that gives rise to directed motion. Dissipation requires interactions with an external environment, su…

cond-mat.soft2026

Learning Effective Hydro-Phoretic Interactions in Active Matter

Palash Bera, Aritra K. Mukhopadhyay, Benno Liebchen

In the quest to understand large-scale collective behavior in active matter, the complexity of hydrodynamic and phoretic interactions remains a fundamental challenge. To date, most…

quant-ph2026

Quantum-enabled active matter at the atomic scale

Sabrina Burgardt, Julian Feß, Alexander Guthmann +8

Active matter comprises particles that extract energy from their local environment and convert it into motion. Although active particles have been miniaturized down to the nanoscal…

cond-mat.soft2026

Quantifying surfactant adsorption at fluid interfaces by combining X-ray reflectivity and simulations

Kay-Robert Dormann, Joshua Reed, Chen Shen +4

Adsorption of surfactants to fluid interfaces occurs in numerous daily-life and technological contexts. The surfactant surface coverage governs interface characteristics like…

cond-mat.soft2026

A general model for frictional contacts in colloidal systems

Kay Hofmann, Kay-Robert Dormann, Benno Liebchen +1

In simulations of colloidal matter, frictional contacts between particles are often neglected. For spherical colloids, such an approximation can be problematic, since frictional co…