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具有由金属量子阱制成的光子拓扑绝缘体的全光调制器。

All-optical modulator with photonic topological insulator made of metallic quantum wells.

作者信息

Wang Haiteng, Niu Junru, Chen Qiaolu, Zhao Sihan, Shao Hua, Yang Yihao, Chen Hongsheng, Li Shilong, Qian Haoliang

机构信息

Interdisciplinary Center for Quantum Information, State Key Laboratory of Modern Optical Instrumentation, College of Information Science and Electronic Engineering, Zhejiang University, Hangzhou 310027, China.

ZJU-Hangzhou Global Science and Technology Innovation Center, Key Lab of Advanced Micro/Nano Electronic Devices & Smart Systems of Zhejiang, Zhejiang University, Hangzhou 310027, China.

出版信息

Nanophotonics. 2024 Jun 26;13(18):3575-3580. doi: 10.1515/nanoph-2024-0197. eCollection 2024 Aug.

Abstract

All-optical modulators hold significant prospects for future information processing technologies for they are able to process optical signals without the electro-optical convertor which limits the achievable modulation bandwidth. However, owing to the hardly-controlled optical backscattering in the commonly-used device geometries and the weak optical nonlinearities of the conventional material systems, constructing an all-optical modulator with a large bandwidth and a deep modulation depth in an integration manner is still challenging. Here, we propose an approach to achieving an on-chip ultrafast all-optical modulator with ultra-high modulation efficiency and a small footprint by using photonic topological insulators (PTIs) made of metallic quantum wells (MQWs). Since PTIs have attracted significant attention because of their unidirectional propagating edge states, which mitigate optical backscattering caused by structural imperfections or defects. Meanwhile, MQWs have shown a large Kerr nonlinearity, facilitating the development of minimally sized nonlinear optical devices including all-optical modulators. The proposed photonic topological modulator shows a remarkable modulation depth of 15 dB with a substantial modulation bandwidth above THz in a tiny footprint of only 4 × 10 µm, which manifests itself as one of the most compact optical modulators compared with the reported ones possessing a bandwidth above 100 GHz. Such a high-performance optical modulator could enable new functionalities in future optical communication and information processing systems.

摘要

全光调制器在未来信息处理技术中具有重要前景,因为它们能够在无需电光转换器的情况下处理光信号,而电光转换器会限制可实现的调制带宽。然而,由于在常用器件几何结构中难以控制光背向散射,以及传统材料系统的光学非线性较弱,以集成方式构建具有大带宽和深调制深度的全光调制器仍然具有挑战性。在此,我们提出一种方法,通过使用由金属量子阱(MQW)制成的光子拓扑绝缘体(PTI)来实现片上超快全光调制器,该调制器具有超高调制效率和小尺寸。由于PTI因其单向传播的边缘态而备受关注,这些边缘态可减轻由结构缺陷或瑕疵引起的光背向散射。同时,MQW已显示出大的克尔非线性,有助于开发包括全光调制器在内的最小尺寸非线性光学器件。所提出的光子拓扑调制器在仅4×10微米的微小尺寸内,展现出15分贝的显著调制深度以及高于太赫兹的可观调制带宽,与已报道的带宽高于100吉赫兹的调制器相比,它是最紧凑的光学调制器之一。这样一种高性能光学调制器能够在未来光通信和信息处理系统中实现新功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/265f/11501365/935d580b91a1/j_nanoph-2024-0197_fig_001.jpg

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