Li Mengmeng, Yin Peng, Liu Zheqi, Dong Fang, Sui Lu, Ma Wanzhuo, Wang Tianshu
Appl Opt. 2022 Feb 10;61(5):1261-1267. doi: 10.1364/AO.447664.
All-optical wavelength conversion technology based on two-dimensional (2D) materials has lately received keen interest. As a new 2D material, borophene displays acceptable photoelectric properties. We demonstrate the all-optical wavelength conversion through four-wave mixing (FWM) in borophene-microfiber hybrid waveguides. Borophene is deposited at the thinnest part of the tapered fiber and enhanced FWM occurs in this photonic device. By optimizing the effect of nonlinear polarization, wavelength tuning, and power variation, the conversion efficiency increases to -19.1, corresponding to 3 dB conversion bandwidth in a range of 7.1 nm. In addition, this photonic device is employed to achieve all-optical wavelength conversion of 10 Gb/s non-return-to-zero digital sequence. The signal quality of converted light such as optical signal-to-noise ratio, bit-error-rate, and eye diagram are investigated, which indicates that the proposed wavelength converter has high conversion efficiency and remarkable stability. This study shows that the borophene-microfiber waveguide has potential application prospects in all-optical signal processing.
基于二维(2D)材料的全光波长转换技术近来备受关注。作为一种新型二维材料,硼烯展现出了良好的光电特性。我们展示了在硼烯-微光纤混合波导中通过四波混频(FWM)实现的全光波长转换。硼烯沉积在锥形光纤的最薄部分,并且在该光子器件中发生增强的四波混频。通过优化非线性极化效应、波长调谐和功率变化,转换效率提高到-19.1,对应于7.1 nm范围内的3 dB转换带宽。此外,该光子器件用于实现10 Gb/s非归零数字序列的全光波长转换。研究了转换光的信号质量,如光信噪比、误码率和眼图,这表明所提出的波长转换器具有高转换效率和显著的稳定性。这项研究表明,硼烯-微光纤波导在全光信号处理方面具有潜在的应用前景。