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二维铁电体中用于电调谐超表面的线性电光效应

Linear Electro-Optic Effect in 2D Ferroelectric for Electrically Tunable Metalens.

作者信息

Liu Yuanda, Wu Yaze, Duan Ruihuan, Fu Jichao, Ovesen Martin, Lai Samuel Chang En, Yeo Think-E, Chee Jing Yee, Chen Yunjie, Teo Siew Lang, Tan Hui Ru, Zhang Wang, Yang Joel K W, Thygesen Kristian Sommer, Liu Zheng, Zhang Yong-Wei, Teng Jinghua

机构信息

Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, Innovis #08-03, Singapore, 138634, Republic of Singapore.

Institute of High Performance Computing (IHPC), Agency for Science, Technology and Research (A*STAR), 1 Fusionopolis Way, #16-16 Connexis, Singapore, 138632, Republic of Singapore.

出版信息

Adv Mater. 2024 Jul;36(29):e2401838. doi: 10.1002/adma.202401838. Epub 2024 May 22.

Abstract

The advent of 2D ferroelectrics, characterized by their spontaneous polarization states in layer-by-layer domains without the limitation of a finite size effect, brings enormous promise for applications in integrated optoelectronic devices. Comparing with semiconductor/insulator devices, ferroelectric devices show natural advantages such as non-volatility, low energy consumption and high response speed. Several 2D ferroelectric materials have been reported, however, the device implementation particularly for optoelectronic application remains largely hypothetical. Here, the linear electro-optic effect in 2D ferroelectrics is discovered and electrically tunable 2D ferroelectric metalens is demonstrated. The linear electric-field modulation of light is verified in 2D ferroelectric CuInPS. The in-plane phase retardation can be continuously tuned by a transverse DC electric field, yielding an effective electro-optic coefficient r of 20.28 pm V. The CuInPS crystal exhibits birefringence with the fast axis oriented along its (010) plane. The 2D ferroelectric Fresnel metalens shows efficacious focusing ability with an electrical modulation efficiency of the focusing exceeding 34%. The theoretical analysis uncovers the origin of the birefringence and unveil its ultralow light absorption across a wide wavelength range in this non-excitonic system. The van der Waals ferroelectrics enable room-temperature electrical modulation of light and offer the freedom of heterogeneous integration with silicon and another material system for highly compact and tunable photonics and metaoptics.

摘要

二维铁电体的出现,其特点是在逐层畴中具有自发极化状态,不受有限尺寸效应的限制,为集成光电器件的应用带来了巨大的前景。与半导体/绝缘体器件相比,铁电器件具有非易失性、低能耗和高响应速度等天然优势。已经报道了几种二维铁电材料,然而,特别是对于光电子应用的器件实现仍然很大程度上是假设性的。在此,发现了二维铁电体中的线性电光效应,并展示了电可调谐二维铁电超构透镜。在二维铁电体CuInPS中验证了光的线性电场调制。面内相位延迟可以通过横向直流电场连续调谐,产生的有效电光系数r为20.28 pm V。CuInPS晶体表现出双折射,其快轴沿(010)平面取向。二维铁电菲涅耳超构透镜显示出有效的聚焦能力,聚焦的电调制效率超过34%。理论分析揭示了双折射的起源,并揭示了在这个非激子系统中其在宽波长范围内的超低光吸收。范德华铁电体实现了光的室温电调制,并为与硅和其他材料系统进行异质集成提供了自由度,以实现高度紧凑和可调谐的光子学和超光学。

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