Zhu Jiankun, Mao Ya-Li, Chen Hu, Yang Kui-Xing, Li Linhu, Yang Bing, Li Zheng-Da, Fan Jingyun
Department of Physics and Shenzhen Institute for Quantum Science and Engineering, Southern University of Science and Technology, Shenzhen, 518055, China.
Guangdong Provincial Key Laboratory of Quantum Metrology and Sensing and School of Physics and Astronomy, Sun Yat-Sen University (Zhuhai Campus), Zhuhai 519082, China.
Phys Rev Lett. 2024 May 17;132(20):203801. doi: 10.1103/PhysRevLett.132.203801.
Non-Hermitian systems can exhibit unique quantum phases without any Hermitian counterparts. For example, the latest theoretical studies predict a new surprising phenomenon that bulk bands can localize and dissipate prominently at the system boundary, which is dubbed the non-Hermitian edge burst effect. Here we realize a one-dimensional non-Hermitian Su-Schrieffer-Heeger lattice with bulk translation symmetry implemented with a photonic quantum walk. Employing time-resolved single-photon detection to characterize the chiral motion and boundary localization of bulk bands, we determine experimentally that the dynamics underlying the non-Hermitian edge burst effect is due to the interplay of non-Hermitian skin effect and imaginary band gap closing. This new non-Hermitian physical effect deepens our understanding of quantum dynamics in open quantum systems.
非厄米系统可以展现出独特的量子相,而不存在任何对应的厄米系统。例如,最新的理论研究预测了一种新的惊人现象,即体态能带可以在系统边界显著地局域化并耗散,这被称为非厄米边缘爆发效应。在这里,我们通过光子量子行走实现了具有体平移对称性的一维非厄米苏-施里弗-黑格晶格。利用时间分辨单光子探测来表征体态能带的手征运动和边界局域化,我们通过实验确定,非厄米边缘爆发效应背后的动力学是由于非厄米趋肤效应和虚能隙闭合的相互作用。这种新的非厄米物理效应加深了我们对开放量子系统中量子动力学的理解。