Interplay between disorder and topology in Thouless pumping on a superconducting quantum processor
Abstract
Topological phases are robust against weak perturbations, but break down when disorder becomes sufficiently strong. However, moderate disorder can also induce topologically nontrivial phases. Thouless pumping, as a (1+1)D counterpart of the integer quantum Hall effect, is one of the simplest manifestations of topology. Here, we report experimental observations of the competition and interplay between Thouless pumping and disorder on a 41-qubit superconducting quantum processor. We improve a Floquet engineering technique to realize cycles of adiabatic pumping by simultaneously varying the on-site potentials and the hopping couplings. We demonstrate Thouless pumping in the presence of disorder and show its breakdown as the strength of disorder increases. Moreover, we observe two types of topological pumping that are induced by on-site potential disorder and hopping disorder, respectively. In particular, an intrinsic topological pump that is induced by quasi-periodic hopping disorder has never been experimentally realized before. Our highly controllable system provides a valuable quantum simulating platform for studying various aspects of topological physics in the presence of disorder.
Keywords
Cite
@article{arxiv.2401.01530,
title = {Interplay between disorder and topology in Thouless pumping on a superconducting quantum processor},
author = {Yu Liu and Yu-Ran Zhang and Yun-Hao Shi and Tao Liu and Congwei Lu and Yong-Yi Wang and Hao Li and Tian-Ming Li and Cheng-Lin Deng and Si-Yun Zhou and Tong Liu and Jia-Chi Zhang and Gui-Han Liang and Zheng-Yang Mei and Wei-Guo Ma and Hao-Tian Liu and Zheng-He Liu and Chi-Tong Chen and Kaixuan Huang and Xiaohui Song and SP Zhao and Ye Tian and Zhongcheng Xiang and Dongning Zheng and Franco Nori and Kai Xu and Heng Fan},
journal= {arXiv preprint arXiv:2401.01530},
year = {2025}
}