1 citations · 1 across the 4 of their papers we have counts for
11 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…
Anomalous Mean-Squared Displacement in Quantum Active Matter from a Wigner Phase-Space Framework
Sangyun Lee, Yehor Tuchkov, Alexander P. Antonov +4
Active matter is driven out of equilibrium by a local influx of energy. While classical active matter has been extensively studied, the extension of active matter concepts to quant…
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…
Extended dynamical density functional theory for nonisothermal binary systems including momentum density
Michael te Vrugt, Hartmut Löwen, Helmut R. Brand +1
In order to describe the nonisothermal dynamics of two-phase flows or binary mixtures such as colloidal suspensions consisting of colloidal particles and solvent on a microscopic l…
Microscopic field theory for active Brownian particles with translational and rotational inertia
Michael te Vrugt
While active matter physics has traditionally focused on particles with overdamped dynamics, recent years have seen an increase of experimental and theoretical work on active syste…