论文标题

拓扑零模式的量子模拟41 QUITION超导处理器

Quantum simulation of topological zero modes on a 41-qubit superconducting processor

论文作者

Shi, Yun-Hao, Liu, Yu, Zhang, Yu-Ran, Xiang, Zhongcheng, Huang, Kaixuan, Liu, Tao, Wang, Yong-Yi, Zhang, Jia-Chi, Deng, Cheng-Lin, Liang, Gui-Han, Mei, Zheng-Yang, Li, Hao, Li, Tian-Ming, Ma, Wei-Guo, Liu, Hao-Tian, Chen, Chi-Tong, Liu, Tong, Tian, Ye, Song, Xiaohui, Zhao, S. P., Xu, Kai, Zheng, Dongning, Nori, Franco, Fan, Heng

论文摘要

在嘈杂的中间量子量子(NISQ)处理器上对量子物质不同外来拓扑阶段的量子模拟正在吸引日益增长的兴趣。在这里,我们开发了一个一维43 Quit的超导量子处理器,称为Chuang-Tzu,以模拟和表征新兴的拓扑状态。通过工程化对角线aubry andr $ \急性{\ mathrm {e}} $ - Harper(aah)型号,我们在实验上展示了Hofstadter Butterfly Energy Spectrum。使用Floquet Engineering,我们验证了相应的异型AAH模型中拓扑零模式的存在,这些模式以前从未实现过。值得注意的是,我们的量子处理器中40多个量子数足够大,可以从其复杂的带结构中捕获量子系统的实质性拓扑特征,包括狄拉克点,能量差距的关闭,偶数和奇数位点之间的差异以及边缘和散装状态之间的区别。我们的结果建立了一种多功能混合量子模拟方法,用于探索NISQ时代的量子拓扑系统。

Quantum simulation of different exotic topological phases of quantum matter on a noisy intermediate-scale quantum (NISQ) processor is attracting growing interest. Here, we develop a one-dimensional 43-qubit superconducting quantum processor, named as Chuang-tzu, to simulate and characterize emergent topological states. By engineering diagonal Aubry-Andr$\acute{\mathrm{e}}$-Harper (AAH) models, we experimentally demonstrate the Hofstadter butterfly energy spectrum. Using Floquet engineering, we verify the existence of the topological zero modes in the commensurate off-diagonal AAH models, which have never been experimentally realized before. Remarkably, the qubit number over 40 in our quantum processor is large enough to capture the substantial topological features of a quantum system from its complex band structure, including Dirac points, the energy gap's closing, the difference between even and odd number of sites, and the distinction between edge and bulk states. Our results establish a versatile hybrid quantum simulation approach to exploring quantum topological systems in the NISQ era.

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