Observation of a tripartite quantum phase for coexisting extended, localized, and critical states
Abstract
The disordered quantum world hosts three fundamental types of states: extended, localized, and critical, of which the critical states are confined to fine-tuned critical points or mobility edges in randomly disordered systems. The tripartite phase, with all three types of states coexisting over finite spectral windows, represents a hallmark distinction between quasiperiodic and truly random systems in the localization physics. Here, we report the realization of this exotic phase in a quasi-periodically driven orbital optical lattice with ultracold atoms. The optical lattice with a quasiperiodic Floquet modulation coupling s and p orbitals is realized in experiment and shown to host the tripartite phase from exact theory. We develop a two-stage protocol to precisely prepare and detect the three types of quantum states. The characteristic exponents of these states are determined from expansion dynamics, showing their distinct universal transport properties. Our study marks a significant advancement in exploring unconventional critical phenomena and localization physics with ultracold atoms.
Cite
@article{arxiv.2605.21441,
title = {Observation of a tripartite quantum phase for coexisting extended, localized, and critical states},
author = {Zhongshu Hu and Yajing Guo and Yu-Dong Wei and Bing-Chen Yao and Zhentian Qian and Xin-Chi Zhou and Bao-Zong Wang and Jianing Yang and Xuzong Chen and Shengjie Jin and Xiong-Jun Liu},
journal= {arXiv preprint arXiv:2605.21441},
year = {2026}
}
Comments
13 pages, 4 figures in the main text