When two Bose-Einstein condensates-labelled 1 and 2-overlap spatially, the equilibrium state of the system depends on the miscibility criterion for the two fluids. Here, we theoretically focus on the non-miscible regime in two spatial dimensions and explore the properties of the localized wave packet formed by the minority component 2 when immersed in an infinite bath formed by component 1. We address the zero-temperature regime and describe the two-fluid system by coupled classical field equations. We show that such a wave packet exists only for an atom number N (2) above a threshold value corresponding to the Townes soliton state. We identify the regimes where this localized state can be described by an effective single-field equation up to the droplet case, where component 2 behaves like an incompressible fluid. We study the near-equilibrium dynamics of the coupled fluids, which reveals specific parameter ranges for the existence of localized excitation modes.

The cross-over from Townes solitons to droplets in a 2D Bose mixture

Stringari S;
2023

Abstract

When two Bose-Einstein condensates-labelled 1 and 2-overlap spatially, the equilibrium state of the system depends on the miscibility criterion for the two fluids. Here, we theoretically focus on the non-miscible regime in two spatial dimensions and explore the properties of the localized wave packet formed by the minority component 2 when immersed in an infinite bath formed by component 1. We address the zero-temperature regime and describe the two-fluid system by coupled classical field equations. We show that such a wave packet exists only for an atom number N (2) above a threshold value corresponding to the Townes soliton state. We identify the regimes where this localized state can be described by an effective single-field equation up to the droplet case, where component 2 behaves like an incompressible fluid. We study the near-equilibrium dynamics of the coupled fluids, which reveals specific parameter ranges for the existence of localized excitation modes.
2023
Istituto Nazionale di Ottica - INO
Inglese
25
1
013007-1
013007-13
13
https://iopscience.iop.org/article/10.1088/1367-2630/acaee3
Sì, ma tipo non specificato
Townes soliton; quantum gas mixtures; self-evaporation; excitation modes; droplets
6
info:eu-repo/semantics/article
262
Bakkalihassani, B; Maury, C; Stringari, S; Nascimbene, S; Dalibard, J; Beugnon, J
01 Contributo su Rivista::01.01 Articolo in rivista
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Descrizione: The cross-over from Townes solitons to droplets in a 2D Bose mixture
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/463370
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