耗散系统
消散
哈密顿量(控制论)
物理
超材料
相变
联轴节(管道)
拓扑(电路)
理论物理学
量子力学
材料科学
组合数学
数学
数学优化
冶金
作者
Chang Li,Ruisheng Yang,Xin‐Chao Huang,Quanhong Fu,Yuancheng Fan,Fuli Zhang
标识
DOI:10.1103/physrevlett.132.156601
摘要
Non-Hermiticity has recently emerged as a rapidly developing field due to its exotic characteristics related to open systems, where the dissipation plays a critical role. In the presence of balanced energy gain and loss with environment, the system exhibits parity-time (PT) symmetry, meanwhile as the conjugate counterpart, anti-PT symmetry can be achieved with dissipative coupling within the system. Here, we demonstrate the coherence of complex dissipative coupling can control the transition between PT and anti-PT symmetry in an electromagnetic metamaterial. Notably, the achievement of the anti-PT symmetric phase is independent of variations in dissipation. Furthermore, we observe phase transitions as the system crosses exceptional points in both anti-PT and PT symmetric metamaterial configurations, achieved by manipulating the frequency and dissipation of resonators. This work provides a promising metamaterial design for broader exploration of non-Hermitian physics and practical application with controllable Hamiltonian.
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