Formation of nonlinear modes in one-dimensional quasiperiodic lattices with a mobility edge

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Main Authors: Zezyulin, Dmitry A., Alfimov, Georgy L.
Format: Preprint
Published: 2024
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author Zezyulin, Dmitry A.
Alfimov, Georgy L.
author_facet Zezyulin, Dmitry A.
Alfimov, Georgy L.
contents We investigate the formation of steady states in one-dimensional Bose-Einstein condensates of repulsively interacting ultracold atoms loaded into a quasiperiodic potential created by two incommensurate periodic lattices. We study the transformations between linear and nonlinear modes and describe the general patterns that govern the birth of nonlinear modes emerging in spectral gaps near band edges. We show that nonlinear modes in a symmetric potential undergo both symmetry-breaking pitchfork bifurcations and saddle-node bifurcations, mimicking the prototypical behaviors of symmetric and asymmetric double-well potentials. The properties of the nonlinear modes differ for bifurcations occurring below and above the mobility edge. In the generic case, when the quasiperiodic potential consists of two incommensurate lattices with a nonzero phase shift between them, the formation of localized modes in the spectral gaps occurs through a cascade of saddle-node bifurcations. Because of the analogy between the Gross-Pitaevskii equation and the nonlinear Schrödinger equation, our results can also be applied to optical modes guided by quasiperiodic photonic lattices.
format Preprint
id arxiv_https___arxiv_org_abs_2411_13936
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Formation of nonlinear modes in one-dimensional quasiperiodic lattices with a mobility edge
Zezyulin, Dmitry A.
Alfimov, Georgy L.
Pattern Formation and Solitons
Quantum Gases
Optics
We investigate the formation of steady states in one-dimensional Bose-Einstein condensates of repulsively interacting ultracold atoms loaded into a quasiperiodic potential created by two incommensurate periodic lattices. We study the transformations between linear and nonlinear modes and describe the general patterns that govern the birth of nonlinear modes emerging in spectral gaps near band edges. We show that nonlinear modes in a symmetric potential undergo both symmetry-breaking pitchfork bifurcations and saddle-node bifurcations, mimicking the prototypical behaviors of symmetric and asymmetric double-well potentials. The properties of the nonlinear modes differ for bifurcations occurring below and above the mobility edge. In the generic case, when the quasiperiodic potential consists of two incommensurate lattices with a nonzero phase shift between them, the formation of localized modes in the spectral gaps occurs through a cascade of saddle-node bifurcations. Because of the analogy between the Gross-Pitaevskii equation and the nonlinear Schrödinger equation, our results can also be applied to optical modes guided by quasiperiodic photonic lattices.
title Formation of nonlinear modes in one-dimensional quasiperiodic lattices with a mobility edge
topic Pattern Formation and Solitons
Quantum Gases
Optics
url https://arxiv.org/abs/2411.13936