Temperature-induced miscibility of impurities in trapped Bose gases

Cita com:
hdl:2117/406721
Document typeArticle
Defense date2024-04-16
PublisherAmerican Physical Society
Rights accessOpen Access
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Attribution-NonCommercial-NoDerivs 4.0 International
Abstract
We study the thermal properties of impurities embedded in a repulsive Bose gas under a harmonic trapping potential. In order to obtain the exact structural properties in this inhomogeneous many-body system, we resort to the path-integral Monte Carlo method. We find that, at low temperatures, a single impurity is expelled to the edges of the bath cloud if the impurity-boson coupling constant is larger than the boson-boson one. However, when the temperature is increased, but still in the Bose-condensed phase, the impurity occupies the center of the trap and, thus, the system becomes miscible. This thermal-induced miscibility crossover is also observed for a finite concentration of impurities in this inhomogeneous system. We find that the transition temperature for miscibility depends on the impurity-boson interaction and we indicate a different nondestructive method to measure the temperature of a system based on the studied phenomenon.
CitationPascual, G. [et al.]. Temperature-induced miscibility of impurities in trapped Bose gases. "Physical review research", 16 Abril 2024, vol. 6, núm. 2.
ISSN2643-1564
Publisher versionhttps://link.aps.org/doi/10.1103/PhysRevResearch.6.L022014
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