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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Cubic-quintic nonlinearity in superfluid Bose-Bose mixtures in optical lattices: Heavy solitary waves, barrier-induced criticality, and current-phase relations
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Cubic-quintic nonlinearity in superfluid Bose-Bose mixtures in optical lattices: Heavy solitary waves, barrier-induced criticality, and current-phase relations

机译:光学晶格中超流体Bose-Bose混合物的立方五次非线性:重孤波,势垒诱导的临界度和电流-相位关系

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We study superfluid (SF) states of strongly interacting Bose-Bose mixtures with equal mass and intracomponent interaction in optical lattices both in the presence and absence of a barrier potential. We show that the SF order parameters obey the two-component nonlinear Schrodinger equation (NLSE) with not only cubic but also quintic nonlinearity in the vicinity of the first-order transitions to the Mott insulators with even fillings. In the case of no barrier potential, we analyze solitary-wave solutions of the cubic-quintic NLSE. When the SF state changes from a ground state to a metastable one, a standard dark solitary wave turns into a bubblelike dark solitary wave, which has a nonvanishing density dip and no pi-phase kink even in the case of a standing solitary wave. It is shown that the former and latter solitary waves are dynamically unstable against an out-of-phase fluctuation and an in-phase fluctuation, respectively, and the dynamical instabilities are weakened when one approaches the transition point. We find that the size and the inertial mass of the solitary waves diverge at the first-order transition point. We suggest that the divergence of the inertial mass may be detected through measurement of the relation between the velocity and the phase jump of the solitary wave. In the presence of a barrier potential, we reveal that when the barrier strength exceeds a certain critical value, the SF state that was metastable without the barrier is destabilized towards complete disjunction of the SF. The presence of the critical barrier strength indicates that the strong barrier potential qualitatively changes the criticality near the metastability limit of the SF state. We derive critical behaviors of the density, the compressibility, and the critical current near the metastability limit induced by the barrier. It is also found that the relation between the supercurrent and the phase jump across the barrier exhibits a peculiar behavior, owing to the nontopological nature of the bubblelike solitary wave.
机译:我们研究存在和不存在势垒势的情况下,在光学晶格中具有相等质量和组分内相互作用的强相互作用Bose-Bose混合物的超流体(SF)状态。我们表明,SF阶参数服从两分量非线性Schrodinger方程(NLSE),它不仅具有三次方非线性,而且在填充均匀的Mott绝缘子的一阶跃迁附近也具有五次非线性。在没有势垒势的情况下,我们分析立方五次NLSE的孤立波解。当SF状态从基态变为亚稳态时,标准的暗孤波变成气泡状的暗孤波,即使在驻波的情况下,其密度下降也不会消失,也不会出现pi相扭结。结果表明,前者和后者孤立波分别对异相波动和同相波动是动态不稳定的,并且当接近过渡点时,动态不稳定性会减弱。我们发现孤立波的大小和惯性质量在第一阶跃迁点处发散。我们建议可以通过测量速度和孤立波的相位跳变之间的关系来检测惯性质量的发散。在存在势垒的情况下,我们揭示出,当势垒强度超过某个临界值时,没有势垒的亚稳态SF状态会朝着SF的完全分离而不稳定。临界势垒强度的存在表明,强势垒势会在SF状态的亚稳态极限附近定性改变临界值。我们推导了在势垒引起的亚稳极限附近的密度,可压缩性和临界电流的临界行为。还发现,由于气泡状孤波的非拓扑性质,超电流和跨势垒的相跳之间的关系表现出特殊的行为。

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