DOE OSTI · 3675820
Topological prethermal strong zero modes on superconducting processors
Abstract
Abstract Symmetry-protected topological phases 1–4 cannot be described by any local order parameter and are beyond the conventional symmetry-breaking model 5 . They are characterized by topological boundary modes that remain stable under symmetry respecting perturbations 1–4,6–8 . In clean, gapped systems without disorder, the stability of these edge modes is restricted to the zero-temperature manifold; at finite temperatures, interactions with mobile thermal excitations lead to their decay 9–11 . Here we report the observation of a distinct type of topological edge mode 12–14 , which is protected by emergent symmetries and persists across the entire spectrum, in an array of 100 programmable superconducting qubits. Through digital quantum simulation of a one-dimensional disorder-free stabilizer Hamiltonian, we observe robust long-lived topological edge modes over up to 30 cycles for a wide range of initial states. We show that the interaction between these edge modes and bulk excitations can be suppressed by dimerizing the stabilizer strength, leading to an emergent U(1) × U(1) symmetry in the prethermal regime of the system. Furthermore, we exploit these topological edge modes as logical qubits and prepare a logical Bell state, which exhibits persistent coherence, despite the system being disorder-free and at finite temperature. Our results establish a viable digital simulation approach 15–18 to experimentally study topological matter at finite temperature and demonstrate a potential route to construct long-lived, robust boundary qubits in disorder-free systems.
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Jin, Feitong (ORCID:0000000307898207), Jiang, Si (ORCID:0000000334414140), Zhu, Xuhao (ORCID:0000000313188367), Bao, Zehang (ORCID:000900079164714X), Shen, Fanhao (ORCID:000900035289419X), Wang, Ke (ORCID:0000000303075457), Zhu, Zitian (ORCID:0000000282192311), Xu, Shibo (ORCID:0000000285464255), Song, Zixuan (ORCID:0000000310899251), Chen, Jiachen, Tan, Ziqi (ORCID:0009000188582193), Wu, Yaozu (ORCID:0000000211374660), Zhang, Chuanyu, Gao, Yu (ORCID:0000000241388983), Wang, Ning (ORCID:0009000838849997), Zou, Yiren (ORCID:0009000828389552), Zhang, Aosai (ORCID:0009000205995361), Li, Tingting (ORCID:0000000265893706), Zhong, Jiarun (ORCID:0009000136316774), Cui, Zhengyi, Han, Yihang, He, Yiyang, Wang, Han, Yang, Jia-Nan, Wang, Yanzhe, Shen, Jiayuan, Liu, Gongyu, Deng, Jinfeng (ORCID:0000000340761608), Dong, Hang (ORCID:0000000218524094), Zhang, Pengfei (ORCID:0000000189084228), Li, Weikang (ORCID:0000000271375390), Yuan, Dong, Lu, Zhide (ORCID:0000000260875138), Sun, Zheng-Zhi (ORCID:0000000173704525), Li, Hekang (ORCID:0000000339144979), Zhang, Junxiang (ORCID:0000000277007396), Song, Chao (ORCID:0000000218539392), Wang, Zhen (ORCID:0000000163698010), Guo, Qiujiang (ORCID:0000000310933405), Machado, Francisco, Kemp, Jack, Iadecola, Thomas (ORCID:0000000251456441), Yao, Norman, Wang, H., Deng, Dong-Ling (ORCID:0000000210424646). 2025-08-27. Topological prethermal strong zero modes on superconducting processors. https://doi.org/10.1038/s41586-025-09476-z
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