Srs Praveen Kumar Vemuri, Kumar Mukesh, Kumari Neelam, Sharma Amit L
Appl Opt. 2020 Jan 10;59(2):564-571. doi: 10.1364/AO.382437.
This paper presents research work about the design and fabrication of a 44-layer optical reflective notch filter. The performance of the fabricated notch filter was studied at normal (0°) and oblique (45°) incidence angle. In addition, the paper also discusses a three-layer broadband antireflective coating on both sides of the multilayer stack to suppress the ripples in the passband region. The thickness-modulated reflective stack of the filter was designed by using the materials (1.63) and (1.46). Optimization of the multilayer stack was carried out by using the damped least-squares algorithm. The theoretical and experimental results from the ion-assisted e-beam deposited samples for single notch reflective filters are presented. Good agreement in the design and experimental results was observed when the deposition process was controlled by time of evaporation. Further, the filter was characterized for the optical properties by using a UV-VIS-NIR spectrophotometer, surface morphology and protective properties using field emission scanning electron microscopy, a coherence correlation interferometer, and water contact angle.
本文介绍了关于44层光学反射陷波滤波器设计与制造的研究工作。对制造出的陷波滤波器在垂直(0°)和倾斜(45°)入射角下的性能进行了研究。此外,本文还讨论了在多层堆叠两侧的三层宽带抗反射涂层,以抑制通带区域的纹波。该滤波器的厚度调制反射堆叠是使用折射率为(1.63)和(1.46)的材料设计的。通过使用阻尼最小二乘法对多层堆叠进行了优化。给出了离子辅助电子束沉积的单陷波反射滤波器样品的理论和实验结果。当通过蒸发时间控制沉积过程时,在设计和实验结果中观察到了良好的一致性。此外,使用紫外 - 可见 - 近红外分光光度计对该滤波器的光学特性进行了表征,使用场发射扫描电子显微镜、相干相关干涉仪和水接触角对其表面形貌和防护性能进行了表征。