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首页> 外文期刊>Physical review letters >Stable Periodic Density Waves in Dipolar Bose-Einstein Condensates Trapped in Optical Lattices
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Stable Periodic Density Waves in Dipolar Bose-Einstein Condensates Trapped in Optical Lattices

机译:固定在光学格子中的偶极玻色-爱因斯坦凝聚物中的稳定周期密度波

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摘要

Density-wave patterns in discrete media with local interactions are known to be unstable. We demonstrate that stable double- and triple-period patterns (DPPs and TPPs), with respect to the period of the underlying lattice, exist in media with nonlocal nonlinearity. This is shown in detail for dipolar Bose-Einstein condensates, loaded into a deep one-dimensional optical lattice. The DPP and TPP emerge via phase transitions of the second and first kind, respectively. The emerging patterns may be stable if the dipole-dipole interactions are repulsive and sufficiently strong, in comparison with the local repulsive nonlinearity. Within the set of the considered states, the TPPs realize a minimum of the free energy. A vast stability region for the TPPs is found in the parameter space, while the DPP stability region is relatively narrow. The same mechanism may create stable density-wave patterns in other physical media featuring nonlocal interactions.
机译:具有局部相互作用的离散介质中的密度波型已知是不稳定的。我们证明,相对于基础晶格的周期,稳定的双周期和三周期模式(DPP和TPP)存在于具有非局部非线性的介质中。对于加载到深一维光学晶格中的偶极Bose-Einstein冷凝物,将对此进行详细显示。 DPP和TPP分别通过第二种和第一种的相变出现。与局部排斥非线性相比,如果偶极-偶极相互作用具有排斥性并且足够强,则新兴模式可能是稳定的。在考虑状态的集合内,TPP实现了最小的自由能。在参数空间中发现了TPP的巨大稳定区域,而DPP稳定区域相对较窄。相同的机制可能会在其他具有非局部相互作用的物理介质中创建稳定的密度波模式。

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