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Holographic edge-illuminated polymer Bragg gratings for dense wavelength division optical filters at 1550 nm

机译:全息边缘照明聚合物布拉格光栅,用于1550 nm的密集波分光学滤光片

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摘要

We discuss the use of holographic photopolymer materials for use as dense wavelength division multiplexing filters in the C-band of the optical communication spectrum. An edge-illuminated hologram configuration is described that effectively extends the grating length to achieve narrow band filters operating near 1550 nm in photopolymers that are 100-200-μm thick. This configuration enables the formation of apodized and cascaded filter systems. Rouard's method is used to examine the properties of both apodization and cascaded gratings and indicates the potential for narrow spectral bandwidths (<0.2 nm) and high side-lobe suppression (<-30 dB). Initial experimental results with a commercially available photopolymer are provided that verify narrowband spectral-transmittance properties (<0.6 nm) and the ability to apodize the index profile. The primary limitation of the design is the absorption of existing photopolymer materials. Optimizing the polymer chemistry for filter design at 1550 nm may solve this problem.
机译:我们讨论了全息光敏聚合物材料在光通信频谱C波段中用作密集波分复用滤波器的用途。描述了一种边缘照明的全息图配置,该配置可有效地扩展光栅长度,以实现在厚度为100-200μm的光敏聚合物中在1550 nm附近工作的窄带滤光片。这种配置能够形成切趾和级联的滤波系统。 Rouard的方法用于检查切趾光栅和级联光栅的特性,并指出窄光谱带宽(<0.2 nm)和高旁瓣抑制(<-30 dB)的可能性。提供了使用可商购的光敏聚合物的初步实验结果,这些结果验证了窄带光谱透射特性(<0.6 nm)和切趾指数分布的能力。设计的主要限制是吸收现有的光敏聚合物材料。在1550 nm处优化聚合物化学成分以用于滤光片设计可以解决此问题。

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