Oliveira Ricardo, Sousa Liliana M, Rocha Ana M, Nogueira Rogério, Bilro Lúcia
Instituto de Telecomunicações, Campus Universitário de Santiago, University of Aveiro, 3810-193 Aveiro, Portugal.
Sensors (Basel). 2021 Mar 11;21(6):1977. doi: 10.3390/s21061977.
In this work, we demonstrate for the first time the capability to inscribe long-period gratings (LPGs) with UV radiation using simple and low cost amplitude masks fabricated with a consumer grade 3D printer. The spectrum obtained for a grating with 690 µm period and 38 mm length presented good quality, showing sharp resonances (i.e., 3 dB bandwidth < 3 nm), low out-of-band loss (0.2 dB), and dip losses up to 18 dB. Furthermore, the capability to select the resonance wavelength has been demonstrated using different amplitude mask periods. The customization of the masks makes it possible to fabricate gratings with complex structures. Additionally, the simplicity in 3D printing an amplitude mask solves the problem of the lack of amplitude masks on the market and avoids the use of high resolution motorized stages, as is the case of the point-by-point technique. Finally, the 3D printed masks were also used to induce LPGs using the mechanical pressing method. Due to the better resolution of these masks compared to ones described on the state of the art, we were able to induce gratings with higher quality, such as low out-of-band loss (0.6 dB), reduced spectral ripples, and narrow bandwidths (3 nm).
在这项工作中,我们首次展示了使用消费级3D打印机制造的简单且低成本的振幅掩模,通过紫外辐射写入长周期光栅(LPG)的能力。对于周期为690 µm、长度为38 mm的光栅所获得的光谱呈现出良好的质量,显示出尖锐的共振(即3 dB带宽<3 nm)、低带外损耗(0.2 dB)以及高达18 dB的凹陷损耗。此外,使用不同的振幅掩模周期已证明了选择共振波长的能力。掩模的定制使得制造具有复杂结构的光栅成为可能。此外,3D打印振幅掩模的简易性解决了市场上振幅掩模短缺的问题,并且避免了使用高分辨率电动平台,逐点技术的情况就是如此。最后,3D打印的掩模还被用于通过机械压印方法诱导LPG。由于这些掩模相比现有技术具有更好的分辨率,我们能够诱导出更高质量的光栅,例如低带外损耗(0.6 dB)、减少的光谱纹波以及窄带宽(3 nm)。