论文标题
一维晶格中的通用二聚量子液滴
Universal dimerized quantum droplets in a one-dimensional lattice
论文作者
论文摘要
从几个和多体的角度研究了一维光学晶格中两个组分骨混合物的地面特性。我们直接依靠具有吸引人的组成部分和排斥性内部分量相互作用来证明量子液体的形成。我们揭示其形成和稳定性可以用二聚体之间的有限范围相互作用来解释。我们得出了一个有效的复合玻色子(二聚体)模型,该模型正确捕获了少数和多体性能,并根据DMRG方法获得的完整哈密顿量获得的确切结果验证它。液体形成的阈值与二聚体二聚体问题中结合状态的外观一致,并且在二聚体二聚体相互作用的两体参数方面具有通用性,即散射长度和有效范围。为了足够强大的有效二聚体排斥,我们观察到构成有效的tonks-girardeau态的二聚体的费物化。最后,我们确定形成孤子溶液的条件。
The ground-state properties of two-component bosonic mixtures in a one-dimensional optical lattice are studied both from few- and many-body perspectives. We rely directly on a microscopic Hamiltonian with attractive inter-component and repulsive intra-component interactions to demonstrate the formation of a quantum liquid. We reveal that its formation and stability can be interpreted in terms of finite-range interactions between dimers. We derive an effective model of composite bosons (dimers) which correctly captures both the few- and many-body properties and validate it against exact results obtained by DMRG method for the full Hamiltonian. The threshold for the formation of the liquid coincides with the appearance of a bound state in the dimer-dimer problem and possesses a universality in terms of the two-body parameters of the dimer-dimer interaction, namely scattering length and effective range. For sufficiently strong effective dimer-dimer repulsion we observe fermionization of the dimers which form an effective Tonks-Girardeau state. Finally, we identify conditions for the formation of a solitonic solution.