1 citations · 1 across the 5 of their papers we have counts for
14 papers
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…
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…
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…
Quantum-enabled active matter at the atomic scale
Sabrina Burgardt, Julian FeÃ, 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…
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…
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…