Please use this identifier to cite or link to this item: https://hdl.handle.net/10321/5829
Title: Resolving the puzzle of sound propagation in a dilute Bose-Einstein condensate
Authors: Zloshchastiev, Konstantin G. 
Keywords: Dilute Bose-Einstein condensate;Quantum Bose Liquid;Logarithmic wave equation;Speed of sound;Sound propagation;Nonperturbative approach;Cold gases;01 Mathematical Sciences;02 Physical Sciences;General Physics;49 Mathematical sciences;51 Physical sciences
Issue Date: 10-Aug-2022
Publisher: World Scientific Pub Co Pte Ltd
Source: Zloshchastiev, K.G. 2022. Resolving the puzzle of sound propagation in a dilute Bose-Einstein condensate. International Journal of Modern Physics B. 36(20): 1-5. doi:10.1142/S0217979222501211
Journal: International Journal of Modern Physics B; Vol. 36, Issue 20 
Abstract: 
A unified model of a dilute Bose–Einstein condensate is proposed, combining the logarithmic and Gross–Pitaevskii (GP) nonlinear terms in a wave equation, where the GP term describes two-body interactions, as suggested by the standard perturbation theory; while the logarithmic term is essentially nonperturbative, and takes into account quantum vacuum effects. The model is shown to have excellent agreement with sound propagation data in the condensate of cold sodium atoms known since the now classic works by Andrews and collaborators. The data also allowed us to place constraints on two of the unified model’s parameters, which describe the strengths of the logarithmic and GP terms. Additionally, we suggest an experiment constraining the value of the third parameter (the characteristic density scale of the logarithmic part of the model), using the conjectured attraction–repulsion transition of many-body interaction inside the condensate.
URI: https://hdl.handle.net/10321/5829
ISSN: 0217-9792
1793-6578 (Online)
DOI: 10.1142/S0217979222501211
Appears in Collections:Research Publications (Systems Science)

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