在时间变化的元表面中,浮盘的拓状态会变化
Qian Ma1, Jian Wei You1, Long Chen1
1State Key Laboratory of Millimeter Waves and Institute of Electromagnetic Space, Southeast University, Nanjing, China.
Science advances
|September 26, 2025
概括
研究人员开发了一个可编程的超表面来研究Floquet的拓状态. 增加调制频率会诱导拓过渡和异常的奇拉边缘状态,从而实现强大的单向传播和波生成.
科学领域:
- 凝聚物质物理学 凝聚物质物理学
- 量子物理学的量子物理学
- 光子学是指光子学的使用方法.
背景情况:
- 叶片系统提供了一个不平衡的周期性平台,用于探索物质的新阶段.
- 现有的研究主要侧重于带有空间周期性驱动的线性,封闭系统.
研究的目的:
- 为研究Floquet拓状态引入可编程的时间变化的超表面.
- 在开放系统中探索拓过渡和异常边缘状态.
主要方法:
- 使用可编程的时间变化的超表面.
- 调查响应调制频率的拓过渡.
- 通过Floquet边缘状态分析波生成.
- 实验证实Floquet波带和边缘状态传播.
主要成果:
- 一个拓过渡随着调制频率的增加而发生.
- 在Floquet和带间隙中出现异常的奇拉边缘状态.
- 开放的超表面促进了和的产生.
- 实验证实了边缘状态的强有力的单向传播.
结论:
- 开发的超表面作为探索Floquet拓物理学的独特平台.
- 该系统展示了动态波操纵中各种应用的潜力.
- 可编程的编码方案允许重新配置的传播路径.
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