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Superfluid-Mott-insulator phase transition and collective fluctuations in both phases of bosons in an optical lattice

机译:超流体-莫特-绝缘子相变和光学晶格中玻色子两相的集体起伏

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摘要

The Bose Hubbard model describing interacting bosons in an optical lattice is reduced to a simple spin-1 XY model with single-ion anisotropy in the vicinity of the Mott phase. In the strong coupling Mott insulating regime, we propose a mean held theory based on a constraint SU(3) pseudo-boson representation on the effective model and discuss the excitation spectra and the phase transition to the superfluid state. Further to the superfluid phase, we use the coherent-state approach to derive the collective excitation modes. It is found that the Mott phase has two degenerate gapped quadratic excitation spectra which graduate into two degenerate gapless linear ones at the transition point, and one gapless linear mode with one gapped quadratic mode in the superfluid phase.
机译:将描述光学晶格中相互作用的玻色子的玻色哈伯德模型简化为在Mott相附近具有单离子各向异性的简单spin-1 XY模型。在强耦合莫特绝缘状态下,我们在有效模型上提出了基于约束SU(3)伪玻色表示的均值保持理论,并讨论了激发光谱和到超流体状态的相变。在超流体阶段之后,我们使用相干态方法来导出集体激发模式。研究发现,莫特相具有两个简并的带隙二次激发谱,在跃迁点处逐渐转变为两个简并的无隙线性激发谱,以及在超流体相中具有一个带隙的二次模的无间隙线性模。

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