Engineering the Bogoliubov Modes through Geometry and Interaction: From Collective Edge Modes to Flat-band Excitations

Maryam Darvishi, Fatemeh Pouresmaeeli, Saeed H. Abedinpour
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Abstract

We propose a procedure to engineer solid-state lattice models with superlattices of interaction-coupled Bose-Einstein condensates. We show that the dynamical equation for the excitations of Bose-Einstein condensates at zero temperature can be expressed in an eigenvalue form that resembles the time-independent Schr{\"o}dinger equation. The eigenvalues and eigenvectors of this equation correspond to the dispersions of the collective modes and the amplitudes of the density oscillations. This alikeness opens the way for the simulation of different tight-binding models with arrays of condensates. We demonstrate, in particular, how we can model a one-dimensional Su-Schrieffer-Heeger lattice supporting topological edge modes and a two-dimensional Lieb lattice with flat-band excitations with superlattices of Bose-Einstein condensates.
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通过几何和相互作用设计波哥留布夫模式:从集体边缘模到平带激励
我们提出了一种利用相互作用耦合玻色-爱因斯坦凝聚态超级晶格来设计固态晶格模型的方法。我们证明,零温度下玻色-爱因斯坦凝聚态激发的动力学方程可以用特征值形式来表示,它类似于与时间无关的薛定谔方程。该方程的特征值和特征向量对应于集合模式的色散和密度振荡的振幅。这种异同为模拟不同的冷凝物阵列紧密束缚模型开辟了道路。我们特别展示了如何模拟支持拓扑边缘模的一维苏-施里弗-希格晶格和具有平带激元的二维李布晶格与玻色-爱因斯坦凝聚态超晶格。
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