Zheng Lingzhi, Wang Bing, Qin Chengzhi, Zhao Lange, Chen Shuyue, Liu Weiwei, Lu Peixiang
Opt Lett. 2024 Mar 15;49(6):1603-1606. doi: 10.1364/OL.520445.
Bloch oscillations (BOs) in a parity-time (PT)-symmetric Su-Schrieffer-Heeger (SSH) waveguide array are theoretically investigated. We show that the BOs are amplified or damped even for the systems to exhibit entirely real energy bands. The amplified and damped BOs stem from the complex Berry phase and closely relate to the topological properties of the lattice. For the topological nontrivial lattice, the amplification and attenuation of BOs are much more prominent than the trivial case and the output Bloch mode can be selected. Furthermore, we propose an experimental scheme and perform a numerical simulation based on a bent waveguide array. Our work uncovers the impact of the topological properties on the dynamics of the bulk Bloch modes and unveils a horizon in the study of non-Hermitian physics. The mode selection induced by the complex Berry phase may also find application in integrated photonic devices such as the mode filter.
从理论上研究了奇偶时间(PT)对称的Su-Schrieffer-Heeger(SSH)波导阵列中的布洛赫振荡(BOs)。我们表明,即使对于具有完全实能带的系统,BOs也会被放大或衰减。放大和衰减的BOs源于复贝里相位,并且与晶格的拓扑性质密切相关。对于拓扑非平凡晶格,BOs的放大和衰减比平凡情况更为显著,并且可以选择输出布洛赫模式。此外,我们提出了一种实验方案,并基于弯曲波导阵列进行了数值模拟。我们的工作揭示了拓扑性质对体布洛赫模式动力学的影响,并揭示了非厄米物理研究中的一个新领域。由复贝里相位引起的模式选择也可能在诸如模式滤波器等集成光子器件中找到应用。