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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Phase diagram of multi-component bosonic mixtures: emergence of mixed superfluid and insulating phases
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Phase diagram of multi-component bosonic mixtures: emergence of mixed superfluid and insulating phases

机译:多组分玻色子混合物的相图:混合超流体相和绝缘相的出现

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摘要

A three-component bosonic mixture is capable of demonstrating a significantly rich phase diagram in comparison with a two-component mixture or a single-component fluid. With experimental studies of multi-component mixtures gaining momentum and comparatively few theoretical efforts, we consider an interacting three-component Bose gas on a lattice and, via a strong coupling expansion of the Bose-Hubbard model, look into a variety of situations, such as the intraspecies and intraspecies interactions being the same and different, attractive and repulsive, etc. A scenario of rich phase diagrams emerges where one species of atoms can be in the superfluid phase while the other two may be in insulating phases. Such a mixed-phase diagram with different species coexisting in different phases is an exciting one: a possibility that can be explored in experiments. Numerical solution of the mean field equations has further demonstrated the occurrence of insulating phases with fractional filling of each species of atoms. Such insulating phases with fractional occupancies are counterintuitive in the context of incompressible phases.
机译:与两组分混合物或单组分流体相比,三组分硼酸混合物能够显示出明显丰富的相图。通过多组分混合物的实验研究获得了动力,并且在理论上进行了较少的研究,我们考虑了晶格上相互作用的三组分Bose气体,并通过Bose-Hubbard模型的强耦合展开研究了各种情况,例如当物种内部和物种内部的相互作用相同,不同,有吸引力且相互排斥等时,出现了一种富相图的情况,其中一种原子可以处于超流体相,而另两种原子可能处于绝缘相。这种具有不同物种共存于不同阶段的混合相图是一个令人兴奋的图:一种可以在实验中探索的可能性。平均场方程的数值解进一步证明了绝缘相的发生,其中每种原子的分数填充。在不可压缩相的情况下,这种具有分数占用的绝缘相是违反直觉的。

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