Observation of flat-band localized state in a one-dimensional diamond momentum lattice of ultracold atoms

Author:

Zeng 曾 Chao 超,Shi 石 Yue-Ran 悦然,Mao 毛 Yi-Yi 一屹,Wu 武 Fei-Fei 菲菲,Xie 谢 Yan-Jun 岩骏,Yuan 苑 Tao 涛,Dai 戴 Han-Ning 汉宁,Chen 陈 Yu-Ao 宇翱

Abstract

We investigated the one-dimensional diamond ladder in the momentum lattice platform. By inducing multiple two- and four-photon Bragg scatterings among specific momentum states, we achieved a flat band system based on the diamond model, precisely controlling the coupling strength and phase between individual lattice sites. Utilizing two lattice sites couplings, we generated a compact localized state associated with the flat band, which remained localized throughout the entire time evolution. We successfully realized the continuous shift of flat bands by adjusting the corresponding nearest neighbor hopping strength, enabling us to observe the complete localization process. This opens avenues for further exploration of more complex properties within flat-band systems, including investigating the robustness of flat-band localized states in disordered flat-band systems and exploring many-body localization in interacting flat-band systems.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

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