Stockermans R J, Rochon P L
Department of Physics, Royal Military College of Canada, Kingston, Ontario K7K 7B4, Canada.
Appl Opt. 1999 Jun 10;38(17):3714-9. doi: 10.1364/ao.38.003714.
Resonant grating waveguide structures were used to fabricate narrow-bandwidth optical filters. Azopolymer films were deposited on top of slab waveguides, and surface relief gratings were optically inscribed on them to be used as couplers. This technique is a simple one-step process and produces efficient gratings with high accuracy. Sharp resonant peaks are observed in the transmission and the reflection spectra of these structures. The thickness and the index of refraction of the waveguide can be accurately determined from these resonances by use of modal theory. These parameters are then used in the design of an optical filter. Bandwidths of less than 1 nm and a decrease in transmitted signal of 60% are reported. Measurement of these values was limited by the divergence of the probe beam.
共振光栅波导结构被用于制造窄带宽光学滤波器。偶氮聚合物薄膜沉积在平板波导顶部,并通过光学刻写在其上形成表面起伏光栅用作耦合器。该技术是一个简单的一步过程,能高精度地制造出高效光栅。在这些结构的透射和反射光谱中观察到尖锐的共振峰。利用模态理论可从这些共振中准确确定波导的厚度和折射率。然后将这些参数用于光学滤波器的设计。据报道带宽小于1纳米,且透射信号下降60%。这些值的测量受探测光束发散的限制。