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基于二氧化钒的可调谐红外光开关

Tunable Infrared Optical Switch Based on Vanadium Dioxide.

作者信息

Wang Qi, Zhang Shijie, Wang Chen, Li Rui, Cai Tianhan, Zhang Dawei

机构信息

Shanghai Key Laboratory of Modern Optics System, Engineering Research Center of Optical Instrument and System, Ministry of Education and Shanghai Key Laboratory of Modern Optical System, School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, 516 Jungong Rd., Shanghai 200093, China.

出版信息

Nanomaterials (Basel). 2021 Nov 6;11(11):2988. doi: 10.3390/nano11112988.

Abstract

A tunable infrared optical switch based on a plasmonic structure consisting of aluminum nanoarrays with a thin film of vanadium dioxide is proposed. This optical switch can realize arbitrary wavelength-selective optical switching in the mid-infrared region by altering the radii of the aluminum nanoarrays. Furthermore, since vanadium dioxide transforms from its low-temperature insulator phase to a high-temperature metallic phase when heated or applied voltage, the optical switch can achieve two-way switching of its "ON" and "OFF" modes. Finite-difference time-domain software is used to simulate the performance of the proposed infrared optical switch. Simulation results show that the switch offers excellent optical performances, that the modulation depth can reach up to 99.4%, and that the extinction ratio exceeds -22.16 dB. In addition, the phase transition time of vanadium dioxide is on the femtosecond scale, which means that this optical switch based on a vanadium dioxide thin film can be used for ultrafast switching.

摘要

提出了一种基于由带有二氧化钒薄膜的铝纳米阵列组成的等离子体结构的可调谐红外光开关。该光开关通过改变铝纳米阵列的半径,可在中红外区域实现任意波长选择性光开关。此外,由于二氧化钒在加热或施加电压时会从低温绝缘相转变为高温金属相,该光开关可实现其“开”和“关”模式的双向切换。使用时域有限差分软件对所提出的红外光开关的性能进行了模拟。模拟结果表明,该开关具有优异的光学性能,调制深度可达99.4%,消光比超过-22.16 dB。此外,二氧化钒的相变时间在飞秒尺度,这意味着这种基于二氧化钒薄膜的光开关可用于超快开关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc9c/8623528/38393ec3287f/nanomaterials-11-02988-g001.jpg

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