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首页> 外文期刊>Physical Review, A >Out-of-equilibrium dynamics of multiple second-order quantum phase transitions in an extended Bose-Hubbard model: Superfluid, supersolid, and density wave
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Out-of-equilibrium dynamics of multiple second-order quantum phase transitions in an extended Bose-Hubbard model: Superfluid, supersolid, and density wave

机译:在扩展Bose-Hubbard模型中多次二阶量子转换的超均衡动态:超流,超糖和密度波

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摘要

In this paper, we study the dynamics of the Bose-Hubbard model with the nearest-neighbor repulsion by using time-dependent Gutzwiller methods. Near the unit filling, the phase diagram of the model contains density wave (DW), supersolid (SS), and superfluid (SF). The three phases are separated by two second-order phase transitions. We study "slow-quench" dynamics by varying the hopping parameter in the Hamiltonian as a function of time. In the phase transitions from the DW to SS and from the DW to SF, we focus on how the SF order forms and study scaling laws of the SF correlation length, vortex density, etc. The results are compared with the Kibble-Zurek scaling. On the other hand from the SF to DW, we study how the DW order evolves with generation of the domain walls and vortices. Measurement of first-order SF coherence reveals interesting behavior in the DW regime.
机译:在本文中,我们使用时间依赖的Gutzwiller方法研究了Bose-Hubbard模型的动态。 在单元填充附近,模型的相图包含密度波(DW),Supersolid(SS)和Superfluid(SF)。 三相由两个二阶相转变分开。 我们通过改变Hamiltonian中的跳跃参数作为时间的函数来研究“缓慢熄灭”动态。 在从DW到SS和DW到SF的阶段转换中,我们专注于SF顺序表格和研究SF相关长度,涡流密度等的缩放规律。结果与KIBBES-ZUPEK缩放进行了比较。 另一方面,从SF到DW,我们研究DW订单如何发出域墙壁和涡流。 一阶SF相干测量揭示了DW制度中的有趣行为。

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