Observation of Relaxation Stages in a Nonequilibrium Closed Quantum System: Decaying Turbulence in a Trapped Superfluid
Invited Talk
M A Moreno-Armijos1, A R Fritsch1, A D García-Orozco1, S Sab1, G Telles1, Y Zhu2, L Madeira1, S Nazarenko2, V S Bagnato3,1
1 University of São Paulo, São Carlos Institute of Physics, São Carlos, Brazil
2 Université Côte d’Azur, CNRS, Nice, France
3 Texas A&M University, College Station, TX, USA
Seminar: S6 — Physics of Cold Trapped Atoms and Ions
Thursday, 9 July 2026 · 14:25 – 14:55
Abstract
The dynamics of nonequilibrium closed quantum systems and their route to thermalization are of fundamental interest to several fields, from cosmology to particle physics. However, a comprehensive description of nonequilibrium phenomena still presents a significant challenge. In this work, we report the observation of distinct stages during the relaxation of the decaying turbulence in trapped Bose-Einstein condensates. Our findings show a direct particle cascade from low to high momenta, a consequence of the energy injection in the system, exhibiting a characteristic universal scaling. This stage is followed by an inverse particle cascade responsible for repopulating the previously depleted condensate. Both cascades can be explained through self-similar solutions provided by wave turbulence theory. These findings provide important insights into the relaxation stages of out-of-equilibrium quantum many-body systems.