Topological Pathways to Two-Dimensional Quantum Turbulence

Fuente: arXiv
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Main Authors: Panico, Riccardo, Ciliberto, Giorgio, Martone, Giovanni Italo, Congy, Thibault, Ballarini, Dario, Lanotte, Alessandra Sabina, Pavloff, Nicolas
Format: Preprint
Published: 2024
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author Panico, Riccardo
Ciliberto, Giorgio
Martone, Giovanni Italo
Congy, Thibault
Ballarini, Dario
Lanotte, Alessandra Sabina
Pavloff, Nicolas
author_facet Panico, Riccardo
Ciliberto, Giorgio
Martone, Giovanni Italo
Congy, Thibault
Ballarini, Dario
Lanotte, Alessandra Sabina
Pavloff, Nicolas
contents We present a combined experimental and theoretical investigation of the formation and decay kinetics of vortices in two dimensional, compressible quantum turbulence. We follow the temporal evolution of a quantum fluid of exciton polaritons, hybrid light matter quasiparticles, and measure both phase and modulus of the order parameter in the turbulent regime. Fundamental topological conservation laws require that the formation and annihilation of vortices also involve critical points of the velocity field, namely nodes and saddles. Identifying the simplest mechanisms underlying these processes enables us to develop an effective kinetic model that closely aligns with the experimental observations, and shows that different processes are responsible for vortex number growth and decay. These findings underscore the crucial role played by topological constraints in shaping nonlinear, turbulent evolution of two dimensional quantum fluids.
format Preprint
id arxiv_https___arxiv_org_abs_2411_11671
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Topological Pathways to Two-Dimensional Quantum Turbulence
Panico, Riccardo
Ciliberto, Giorgio
Martone, Giovanni Italo
Congy, Thibault
Ballarini, Dario
Lanotte, Alessandra Sabina
Pavloff, Nicolas
Quantum Gases
Fluid Dynamics
Optics
We present a combined experimental and theoretical investigation of the formation and decay kinetics of vortices in two dimensional, compressible quantum turbulence. We follow the temporal evolution of a quantum fluid of exciton polaritons, hybrid light matter quasiparticles, and measure both phase and modulus of the order parameter in the turbulent regime. Fundamental topological conservation laws require that the formation and annihilation of vortices also involve critical points of the velocity field, namely nodes and saddles. Identifying the simplest mechanisms underlying these processes enables us to develop an effective kinetic model that closely aligns with the experimental observations, and shows that different processes are responsible for vortex number growth and decay. These findings underscore the crucial role played by topological constraints in shaping nonlinear, turbulent evolution of two dimensional quantum fluids.
title Topological Pathways to Two-Dimensional Quantum Turbulence
topic Quantum Gases
Fluid Dynamics
Optics
url https://arxiv.org/abs/2411.11671