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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Gap solitons in superfluid boson-fermion mixtures
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Gap solitons in superfluid boson-fermion mixtures

机译:超流体玻色子-费米子混合物中的间隙孤子

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Using coupled equations for the bosonic and fermionic order parameters, we construct families of gap solitons (GSs) in a nearly one-dimensional Bose-Fermi mixture trapped in a periodic optical-lattice (OL) potential, the boson and fermion components being in the states of the Bose-Einstein condensation and Bardeen-Cooper-Schrieffer superfluid, respectively. Fundamental GSs are compact states trapped, essentially, in a single cell of the lattice. Full families of such solutions are constructed in the first two band gaps of the OL-induced spectrum, by means of variational and numerical methods, which are found to be in good agreement. The families include both intragap and intergap solitons, with the chemical potentials of the boson and fermion components falling in the same or different band gaps, respectively. Nonfundamental states, extended over several lattice cells, are constructed too. The GSs are stable against strong perturbations.
机译:使用耦合方程的玻色子和费米子级参数,我们在捕获在周期性光学晶格(OL)势中的几乎一维Bose-Fermi混合物中构造了间隙孤子(GSs)族,玻色子和费米子成分位于玻色-爱因斯坦凝聚态和Bardeen-Cooper-Schrieffer超流体态。基本GS是基本上被困在晶格的单个单元中的紧凑状态。通过变分和数值方法,在OL诱导光谱的前两个带隙中构建了此类解决方案的完整族,发现它们具有很好的一致性。这些族包括间隙内和间隙内孤子,玻色子和费米子组分的化学势分别落在相同或不同的带隙中。非基本状态也扩展到几个晶格单元上。 GS是稳定的,不会受到强烈干扰。

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