Song Wange, You Oubo, Sun Jiacheng, Wu Shengjie, Chen Chen, Huang Chunyu, Qiu Kai, Zhu Shining, Zhang Shuang, Li Tao
National Laboratory of Solid State Microstructures, Key Laboratory of Intelligent Optical Sensing and Manipulations, Jiangsu Key Laboratory of Artificial Functional Materials, College of Engineering and Applied Sciences, Nanjing University, Nanjing 210093, China.
New Cornerstone Science Laboratory, Department of Physics, University of Hong Kong, Hong Kong, China.
Sci Adv. 2024 Jul 26;10(30):eadn5028. doi: 10.1126/sciadv.adn5028.
Topological pumps have garnered substantial attention in physics. However, the requirement for slow evolution speed to satisfy adiabaticity greatly restricts their application in on-chip devices. Here, we discover a direct link between adiabaticity and quantum metric, the real part of quantum geometry that has been relatively less explored compared to its imaginary counterpart, the Berry curvature. We demonstrate that the evolution speed of topological pumps between nontrivial edge states can be increased by reducing the quantum metric via introduction of long-range coupling to the celebrated Rice-Mele model. This fast topological pump can occur without affecting the bulk state evolution, which challenges the common understanding. We experimentally confirm our findings by using a platform consisting of bilayer integrated silicon waveguides operating at telecommunication wavelengths. Our work provides possibilities for lifting topological pumps from the constraints of slow evolution and paves the way toward compact photonic integration.
拓扑泵浦在物理学领域已备受关注。然而,对缓慢演化速度以满足绝热性的要求极大地限制了它们在片上器件中的应用。在此,我们发现了绝热性与量子度量之间的直接联系,量子度量是量子几何的实部,与它的虚部贝里曲率相比,其探索相对较少。我们证明,通过将长程耦合引入著名的赖斯 - 梅勒模型来降低量子度量,可以提高拓扑泵浦在非平凡边缘态之间的演化速度。这种快速拓扑泵浦可以在不影响体态演化的情况下发生,这挑战了人们的普遍认知。我们通过使用一个由工作在电信波长的双层集成硅波导组成的平台,实验证实了我们的发现。我们的工作为拓扑泵浦摆脱缓慢演化的限制提供了可能性,并为紧凑型光子集成铺平了道路。