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Feshbach resonances in ultracold gases
Feshbach resonances are the essential tool to control the interaction between atoms in
ultracold quantum gases. They have found numerous experimental applications, opening up …
ultracold quantum gases. They have found numerous experimental applications, opening up …
Dark solitons in atomic Bose–Einstein condensates: from theory to experiments
This review paper presents an overview of the theoretical and experimental progress on the
study of matter-wave dark solitons in atomic Bose–Einstein condensates. Upon introducing …
study of matter-wave dark solitons in atomic Bose–Einstein condensates. Upon introducing …
Self-bound quantum droplets of atomic mixtures in free space
Self-bound quantum droplets are a newly discovered phase in the context of ultracold
atoms. In this Letter, we report their experimental realization following the original proposal …
atoms. In this Letter, we report their experimental realization following the original proposal …
Observation of quantum droplets in a heteronuclear bosonic mixture
We report on the formation of heteronuclear quantum droplets in an attractive bosonic
mixture of K 41 and Rb 87. We observe long-lived self-bound states, both in free space and …
mixture of K 41 and Rb 87. We observe long-lived self-bound states, both in free space and …
Rapidly rotating atomic gases
In this article, we review developments in the theory of rapidly rotating degenerate atomic
gases. The main focus is on the equilibrium properties of a single-component atomic Bose …
gases. The main focus is on the equilibrium properties of a single-component atomic Bose …
Tunable miscibility in a dual-species Bose-Einstein condensate
We report on the observation of controllable phase separation in a dual-species Bose-
Einstein condensate with Rb 85 and Rb 87. Interatomic interactions between the different …
Einstein condensate with Rb 85 and Rb 87. Interatomic interactions between the different …
Quantum dynamics of impurities in a one-dimensional Bose gas
Using a species-selective dipole potential, we create initially localized impurities and
investigate their interactions with a majority species of bosonic atoms in a one-dimensional …
investigate their interactions with a majority species of bosonic atoms in a one-dimensional …
[كتاب][B] The defocusing nonlinear Schrödinger equation: from dark solitons to vortices and vortex rings
PG Kevrekidis, DJ Frantzeskakis… - 2015 - SIAM
The phenomenon of Bose–Einstein condensation is a phase transition originally predicted
by Bose and Einstein in 1924. In particular, it was shown that below a critical temperature T …
by Bose and Einstein in 1924. In particular, it was shown that below a critical temperature T …
Three-dimensional droplets of swirling superfluids
A method for the creation of three-dimensional (3D) solitary topological modes,
corresponding to vortical droplets of a two-component dilute superfluid, is presented. We …
corresponding to vortical droplets of a two-component dilute superfluid, is presented. We …
Phase separation and dynamics of two-component Bose-Einstein condensates
The miscibility of two interacting quantum systems is an important testing ground for the
understanding of complex quantum systems. Two-component Bose-Einstein condensates …
understanding of complex quantum systems. Two-component Bose-Einstein condensates …