Dynamics of Onsager vortex clustering in decaying turbulent polariton quantum fluids

Fuente: arXiv
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Hauptverfasser: Comaron, P., Panico, R., Ballarini, D., Matuszewski, M.
Format: Preprint
Veröffentlicht: 2024
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author Comaron, P.
Panico, R.
Ballarini, D.
Matuszewski, M.
author_facet Comaron, P.
Panico, R.
Ballarini, D.
Matuszewski, M.
contents We investigate the turbulent properties of a confined driven-dissipative polariton quantum fluid after a pulsed excitation. Using numerical simulations, we provide insight into the vortex clustering processes that emerge during the relaxation dynamics of the initially injected vortex cloud. A confrontation between conservative and non-conservative dynamics reveals that the onset of clusterization strongly depends on the interplay between the different characteristic system lengths and time scales at stake, with an additional time scale due to dissipation in the non-conservative case. Quantification of the clustering observables allows us to numerically characterize the optimal conditions for observing Onsager condensation in decaying polariton systems, demonstrating its experimental reachability under pulse excitation. These findings hold significance for exploring the onset of turbulent dynamics in open systems, spanning both classical and quantum domains.
format Preprint
id arxiv_https___arxiv_org_abs_2402_01637
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dynamics of Onsager vortex clustering in decaying turbulent polariton quantum fluids
Comaron, P.
Panico, R.
Ballarini, D.
Matuszewski, M.
Quantum Gases
Mesoscale and Nanoscale Physics
Optics
We investigate the turbulent properties of a confined driven-dissipative polariton quantum fluid after a pulsed excitation. Using numerical simulations, we provide insight into the vortex clustering processes that emerge during the relaxation dynamics of the initially injected vortex cloud. A confrontation between conservative and non-conservative dynamics reveals that the onset of clusterization strongly depends on the interplay between the different characteristic system lengths and time scales at stake, with an additional time scale due to dissipation in the non-conservative case. Quantification of the clustering observables allows us to numerically characterize the optimal conditions for observing Onsager condensation in decaying polariton systems, demonstrating its experimental reachability under pulse excitation. These findings hold significance for exploring the onset of turbulent dynamics in open systems, spanning both classical and quantum domains.
title Dynamics of Onsager vortex clustering in decaying turbulent polariton quantum fluids
topic Quantum Gases
Mesoscale and Nanoscale Physics
Optics
url https://arxiv.org/abs/2402.01637