Vortices and Turbulence in Trapped Atomic Condensates
Overview
Affiliations
After more than a decade of experiments generating and studying the physics of quantized vortices in atomic gas Bose-Einstein condensates, research is beginning to focus on the roles of vortices in quantum turbulence, as well as other measures of quantum turbulence in atomic condensates. Such research directions have the potential to uncover new insights into quantum turbulence, vortices, and superfluidity and also explore the similarities and differences between quantum and classical turbulence in entirely new settings. Here we present a critical assessment of theoretical and experimental studies in this emerging field of quantum turbulence in atomic condensates.
Observing the loss and revival of long-range phase coherence through disorder quenches.
Nagler B, Barbosa S, Koch J, Orso G, Widera A Proc Natl Acad Sci U S A. 2022; 119(1).
PMID: 34983842 PMC: 8740730. DOI: 10.1073/pnas.2111078118.
Sound emission and annihilations in a programmable quantum vortex collider.
Kwon W, Del Pace G, Xhani K, Galantucci L, Muzi Falconi A, Inguscio M Nature. 2021; 600(7887):64-69.
PMID: 34853459 DOI: 10.1038/s41586-021-04047-4.
Turbulence in a matter-wave supersolid.
Hsueh C, Tsai Y, Horng T, Tsubota M, Wu W Sci Rep. 2018; 8(1):12589.
PMID: 30135502 PMC: 6105649. DOI: 10.1038/s41598-018-30852-5.
Fluid dynamics: Turbulence in a quantum gas.
Anderson B Nature. 2016; 539(7627):36-37.
PMID: 27808204 DOI: 10.1038/539036a.
From coherent shocklets to giant collective incoherent shock waves in nonlocal turbulent flows.
Xu G, Vocke D, Faccio D, Garnier J, Roger T, Trillo S Nat Commun. 2015; 6:8131.
PMID: 26348292 PMC: 4569716. DOI: 10.1038/ncomms9131.