Li Huanan, Yin Shixiong, Galiffi Emanuele, Alù Andrea
Photonics Initiative, Advanced Science Research Center, City University of New York, New York, New York 10031, USA.
Department of Electrical Engineering, City College of The City University of New York, New York, New York 10031, USA.
Phys Rev Lett. 2021 Oct 8;127(15):153903. doi: 10.1103/PhysRevLett.127.153903.
Temporal interfaces introduced by abrupt switching of the constitutive parameters of unbounded media enable unusual wave phenomena. So far, their explorations have been mostly limited to lossless media. Yet, non-Hermitian phenomena leveraging material loss and gain, and their balanced combination in parity-time (PT)-symmetric systems, have been opening new vistas in photonics. Here, we unveil the role that temporal interfaces offer in non-Hermitian physics, introducing the dual of PT symmetry for temporal boundaries. Our findings reveal unexplored interference mechanisms enabling extreme energy manipulation, and open new scenarios for time-switched metamaterials, connecting them with the broad opportunities offered by non-Hermitian phenomena.
无界介质本构参数的突然切换所引入的时间界面能够实现非同寻常的波动现象。到目前为止,对它们的探索大多局限于无损介质。然而,利用材料损耗和增益以及它们在宇称-时间(PT)对称系统中的平衡组合的非厄米现象,一直在光子学领域开辟新的前景。在此,我们揭示了时间界面在非厄米物理学中所起的作用,引入了时间边界的PT对称性对偶。我们的研究结果揭示了尚未被探索的干涉机制,这些机制能够实现极端的能量操控,并为时间切换超材料开辟了新的场景,将它们与非厄米现象所提供的广泛机遇联系起来。