Beyond Lee-Huang-Yang description of self-bound Bose mixtures

Miki Ota, G. Astrakharchik
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引用次数: 32

Abstract

We investigate the properties of self-bound ultradilute Bose-Bose mixtures, beyond the Lee-Huang-Yang description. Our approach is based on the determination of the beyond mean-field corrections to the phonon modes of the mixture in a self-consistent way and calculation of the associated equation of state. The newly obtained ground state energies show excellent agreement with recent quantum Monte Carlo calculations, providing a simple and accurate description of the self-bound mixtures with contact type interaction. We further show numerical results for the equilibrium properties of the finite size droplet, by adjusting the Gross-Pitaevskii equation. Our analysis is extended to the one-dimensional mixtures where an excellent agreement with quantum Monte Carlo predictions is found for the equilibrium densities. Finally, we discuss the effects of temperature on the stability of the liquid phase.
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超越自束缚玻色混合物的李-黄-杨描述
我们研究了自束缚超稀玻色-玻色混合物的性质,超出了李-黄-杨描述。我们的方法是基于以自洽方式确定混合物声子模式的超平均场修正和相关状态方程的计算。新获得的基态能量与最近的量子蒙特卡罗计算结果非常吻合,提供了具有接触型相互作用的自束缚混合物的简单而准确的描述。通过调整Gross-Pitaevskii方程,我们进一步给出了有限尺寸液滴平衡特性的数值结果。我们的分析扩展到一维混合物中,发现平衡密度与量子蒙特卡罗预测非常吻合。最后讨论了温度对液相稳定性的影响。
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