most citedModeling dissipation in quantum active matter

1 citations · 1 across the 3 of their papers we have counts for

collaborators

5 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

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…

cond-mat.stat-mech2025

Engineering active motion in quantum matter

Alexander P. Antonov, Yuanjian Zheng, Benno Liebchen +1

We introduce a framework for engineering active quantum matter that involves mimicking the role of self-propulsion through an external trapping potential that is moving along impos…

cond-mat.soft2025

Towards Intelligent Active Particles

Hartmut Löwen, Benno Liebchen

In this book chapter we describe recent applications of artificial intelligence and in particular machine learning to active matter systems. Active matter is composed of agents, or…