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铁电极化驱动的石墨烯非易失性电光响应

Nonvolatile Electro-optic Response of Graphene Driven by Ferroelectric Polarization.

作者信息

Wu Jianghong, Jian Jialing, Ma Hui, Ye Yuting, Tang Bo, Qian Zhuang, Deng Qingyan, Sun Boshu, Liu Shi, Lin Hongtao, Li Lan

机构信息

Key Laboratory of 3D Micro/Nano Fabrication and Characterization of Zhejiang Province, School of Engineering, Westlake University, Hangzhou 310024, China.

Institute of Advanced Technology, Westlake Institute for Advanced Study, Hangzhou 310024, China.

出版信息

Nano Lett. 2024 Sep 18;24(37):11469-11475. doi: 10.1021/acs.nanolett.4c02625. Epub 2024 Sep 3.

Abstract

Two-dimensional materials (2DMs) have exhibited remarkably tunable optical characteristics, which have been applied for significant applications in communications, sensing, and computing. However, the reported tunable optical properties of 2DMs are almost volatile, impeding them in the applications of multifarious emerging frameworks such as programmable operation and neuromorphic computing. In this work, nonvolatile electro-optic response is developed by the graphene-AlO-InSe heterostructure integrating with microring resonators (MRRs). In such compact devices, the optical absorption coefficient of graphene is substantially tuned by the out-of-plane ferroelectric polarization in α-InSe, resulting in a nonvolatile optical transmission in MRRs. This work demonstrates that integrating graphene with ferroelectric materials paves the way to develop nonvolatile devices in photonic circuits for emerging applications such as optical neural networks.

摘要

二维材料(2DMs)展现出了显著的可调节光学特性,这些特性已在通信、传感和计算等重要应用中得到应用。然而,所报道的二维材料的可调节光学特性几乎都是易失性的,这阻碍了它们在诸如可编程操作和神经形态计算等各种新兴框架中的应用。在这项工作中,通过将石墨烯 - AlO - InSe异质结构与微环谐振器(MRR)集成,开发出了非易失性电光响应。在这种紧凑型器件中,石墨烯的光吸收系数通过α-InSe中的面外铁电极化得到显著调节,从而在微环谐振器中产生非易失性光传输。这项工作表明,将石墨烯与铁电材料集成可为在光子电路中开发用于诸如光学神经网络等新兴应用的非易失性器件铺平道路。

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