Non-Hermitian spin-orbit coupling and beyond
POSTER
Abstract
Spin-orbit coupling, as an effective tool for exploring topological insulators, has been extensively studied in well-isolated Hermitian systems and recently been brought to the open quantum system with gain and loss described by a non-Hermitian Hamiltonian [1]. Here, we demonstrate new tools for non-Hermitian spin-orbit coupled systems. First, we introduce Floquet engineering to the non-Hermitian topological lattice by applying a periodic driving signal to the spin-orbit coupling. This approach allows us to investigate the interplay between Floquet engineering and non-Hermitian physics, including the non-Hermitian skin effect [2]. We also explore higher-order exceptional points (EPs) in a dissipative three-level spin-orbit-coupled fermions system. The tunable dissipation in this system enables us to observe abrupt phase transitions and adjust the energy gap.
*Funding support: RGC 16302420,16302821,16306321, 16306922,16302123, C6009-20G, RFS2122-6S04 and N-HKUST636-22.
Publication: [1] Z. Ren, D. Liu, E. Zhao, C. He, K. K. Pak, J. Li and G.-B. Jo, Nature Physics 18, 385 (2022)
[2] Entong Zhao, Zhiyuan Wang, Chengdong He, Ting Fung Jeffrey Poon, Ka Kwan Pak, Yu-Jun Liu, Peng Ren, Xiong-Jun Liu and Gyu-Boong Jo, arXiv 2311.07931 (2023)
Presenters
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Peng REN
- The Hong Kong University of Science and Technology (HKUST)