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用于光学加密应用的具有光学二元性的电致变色纳米像素。

Electrochromic nanopixels with optical duality for optical encryption applications.

作者信息

Ko Joo Hwan, Yeo Ji-Eun, Jeong Hyo Eun, Yoo Dong Eun, Lee Dong Wook, Oh Yeon-Wha, Jung Sanghee, Kang Il-Seok, Jeong Hyeon-Ho, Song Young Min

机构信息

School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology (GIST), Cheomdangwagi-ro 123, Buk-gu, Gwangju 61005, Republic of Korea.

National Nanofab Center, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.

出版信息

Nanophotonics. 2024 Jan 12;13(7):1119-1129. doi: 10.1515/nanoph-2023-0737. eCollection 2024 Mar.

Abstract

Advances in nanophotonics have created numerous pathways for light-matter interactions in nanometer scale, enriched by physical and chemical mechanisms. Over the avenue, electrically tunable photonic response is highly desired for optical encryption, optical switch, and structural color display. However, the perceived obstacle, which lies in the energy-efficient tuning mechanism and/or its weak light-matter interaction, is treated as a barrier. Here, we introduce electrochromic nanopixels made of hybrid nanowires integrated with polyaniline (PANI). The device shows optical duality between two resonators: (i) surface plasmon polariton (SPP)-induced waveguide (wavelength-selective absorber) and (ii) ultrathin resonator (broadband absorber). With switching effect of between resonant modes, we achieve enhanced chromatic variation spanning from red to green and blue while operating at a sub-1-volt level, ensuring compatibility with the CMOS voltage range. This modulation is achieved by improving the light-matter interaction, effectively harnessing the intrinsic optical property transition of PANI from lossy to dielectric in response to the redox states. In our experimental approach, we successfully scaled up device fabrication to an 8-inch wafer, tailoring the nanowire array to different dimensions for optical information encryption. Demonstrating distinct chromaticity modulation, we achieve optical encryption of multiple data bits, up to 8 bits per unit cell. By capitalizing on the remarkable sensitivity to the angular dependence of the waveguiding mode, we further enhance the information capacity to an impressive 10 bits per unit cell.

摘要

纳米光子学的进展为纳米尺度上的光与物质相互作用创造了众多途径,这些途径因物理和化学机制而更加丰富。在这条道路上,电可调谐光子响应对于光学加密、光开关和结构色显示来说是非常需要的。然而,存在于节能调谐机制和/或其微弱的光与物质相互作用中的明显障碍被视为一道壁垒。在此,我们介绍了由与聚苯胺(PANI)集成的混合纳米线制成的电致变色纳米像素。该器件在两个谐振器之间展现出光学二元性:(i)表面等离激元极化激元(SPP)诱导的波导(波长选择性吸收器)和(ii)超薄谐振器(宽带吸收器)。通过谐振模式之间的切换效应,我们在低于1伏的电压下实现了从红色到绿色再到蓝色的增强色度变化,确保了与CMOS电压范围的兼容性。这种调制是通过改善光与物质的相互作用来实现的,有效地利用了聚苯胺响应氧化还原状态时从有损到介电的固有光学性质转变。在我们的实验方法中,我们成功地将器件制造扩大到8英寸晶圆,将纳米线阵列定制为不同尺寸以用于光学信息加密。通过展示独特的色度调制,我们实现了多个数据位的光学加密,每个单位单元高达8位。通过利用对波导模式角度依赖性的显著敏感性,我们进一步将信息容量提高到每个单位单元令人印象深刻的10位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0fc/11501882/b7c0c3c8a0e3/j_nanoph-2023-0737_fig_001.jpg

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