Gap solitons and nonlinear Bloch states in Bose-Einstein condensates with current-dependent interactions

Jintao Xu, Qian Jia, Haibo Qiu, Antonio Muñoz Mateo
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Abstract

We show how the chiral properties of Bose-Einstein condensates subject to current-density interactions and loaded in optical lattices can be observed in the realization of nonlinear Bloch states, whose spectrum lacks the usual periodic structure. Chirality is also manifested by spatially localized states, or gap solitons, which are found for positive rotation rates of the lattice at the energy gaps between the linear energy bands, whereas for negative rotations they appear in the semi-infinite gap of the linear spectrum. The stability of extended and localized states is checked through the spectrum of linear excitations and nonlinear time evolution of perturbed states, and the phenomenon of Bloch oscillations is explored. Our results are obtained in quasi-one-dimensional ring geometries with feasible experimental parameters.
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具有电流依赖相互作用的玻色-爱因斯坦凝聚中的间隙孤子和非线性布洛赫态
我们展示了如何在非线性布洛赫态的实现中观察到受电流密度相互作用和加载在光学晶格中的玻色-爱因斯坦凝聚体的手性,其光谱缺乏通常的周期结构。手性还表现为空间局域化态或间隙孤子,它们在线性能带之间的能量间隙处发现晶格的正旋转速率,而对于负旋转它们出现在线性谱的半无限间隙中。通过线性激励谱和摄动态的非线性时间演化检验了扩展态和局域态的稳定性,并探讨了布洛赫振荡现象。我们的结果是在具有可行实验参数的准一维环几何上得到的。
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