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Dilute quantum liquid in a K-Rb Bose mixture

Published 13 Jul 2021 in cond-mat.quant-gas, physics.atom-ph, physics.comp-ph, physics.flu-dyn, and quant-ph | (2107.05905v1)

Abstract: A quantum liquid in a heterogeneous mixture of ${41}$K and ${87}$Rb atoms is studied using the diffusion Monte Carlo method and Density Functional Theory. The perturbative Lee-Huang-Yang term for a heterogeneous mixture is verified and it is proved to be valid only near the gas-liquid transition. Based on the equations of state of the bulk mixture, calculated with diffusion Monte Carlo, extensions to Lee-Huang-Yang corrected mean-field energy functionals (MF+LHY) are presented. Using Density Functional Theory, a systematic comparison between different functionals is performed, focusing on the critical atom number, surface tension, surface width, Tolman length, and compressibility. These results are given as a function of the inter-species interaction strength, within the stability domain of the liquid mixture.

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