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首页> 外文期刊>Journal of the Physical Society of Japan >Superfluid, Supersolid, and Checkerboard Solid in Two-Component Bosons in an Optical Lattice: Study by Means of Gross–Pitaevskii Theory and Monte-Carlo Simulations
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Superfluid, Supersolid, and Checkerboard Solid in Two-Component Bosons in an Optical Lattice: Study by Means of Gross–Pitaevskii Theory and Monte-Carlo Simulations

机译:光学晶格中两组分玻色子中的超流体,超固体和棋盘固体:通过Gross-Pitaevskii理论和蒙特卡洛模拟方法进行研究

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The bosonic t–J model is a strong-on-site repulsion limit of the two-component Bose–Hubbard model and is expected to be realized by experiments of cold atoms in an optical lattice. In previous papers, we studied the bosonic t–J model by both analytical methods and numerical Monte-Carlo (MC) simulations. However, in the case of finite J_z, where J_z is the z-component coupling constant of the pseudospin interaction, the phase diagram of the model was investigated by assuming the checkerboard type of boson densities. In this study, we shall continue our previous study of the bosonic t–J model using both the Gross–Pitaevskii (GP) theory and MC simulations without assuming any pattern of boson densities. These two methods complement each other and give reliable results. We show that as J_z is increased, the superfluid state evolves into a supersolid (SS), and furthermore into a genuine solid with the checkerboard symmetry. In the present study, we propose a method identifying quantum phase transitions in the GP theory. We also study finitetemperature phase transitions of the superfluidity and the diagonal solid order of the SS by MC simulations.
机译:玻色T–J模型是两组分Bose–Hubbard模型的强现场排斥极限,有望通过光学晶格中冷原子的实验来实现。在以前的文章中,我们通过分析方法和数值蒙特卡洛(MC)模拟研究了Bosonic t-J模型。但是,在有限J_z的情况下,其中J_z是伪自旋相互作用的z分量耦合常数,通过假设玻色子密度的棋盘格类型来研究模型的相图。在这项研究中,我们将继续使用Gross-Pitaevskii(GP)理论和MC模拟对玻色t-J模型进行先前的研究,而无需假设任何玻色子密度模式。这两种方法相辅相成,并给出可靠的结果。我们表明,随着J_z的增加,超流体状态演变为超固体(SS),并且进一步发展为具有棋盘对称性的真正固体。在本研究中,我们提出了一种在GP理论中识别量子相变的方法。我们还通过MC模拟研究了SS的超流体的有限温度相变和对角线固体阶。

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