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Realization and characterization of multi-layer mirrors for Fabry-Perot interferometry in optic communication systems

机译:光通信系统中用于法布里-珀罗干涉测量的多层反射镜的实现和特性

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A theoretical design and experimental realization of multi-layer mirrors for Fabry-Perot interferometry and optical telecommunications is described in this work. The mirrors were designed and fabricated by 13 successive thin layers to achieve very high reflectance at optical wavelengths around 1300 nm. Thin layers are ZnS y MgF_2 presenting high and low refractive index respectively. Layer thickness are of λ_o/2 at λ_o = 656 nm. Experimental results include the characterization of the transmittance of mirrors around 1300 nm. Additionally the mirrors were integrated in a Fabry-Perot interferometer to characterize optical sources emitting at 1300 nm. Finally to show a practical application, optical phase modulation was analyzed, using the fabricated mirrors.
机译:在这项工作中描述了用于Fabry-Perot干涉测量和光通信的多层反射镜的理论设计和实验实现。反射镜由13个连续的薄层设计和制造,以在1300 nm左右的光波长下获得很高的反射率。薄层是分别具有高和低折射率的ZnS y MgF_2。在λ_o= 656nm处,层厚度为λ_o/ 2。实验结果包括表征1300 nm附近反射镜的透射率。此外,这些反射镜还集成在Fabry-Perot干涉仪中,以表征在1300 nm处发射的光源。最后,为了展示实际应用,使用制作的反射镜分析了光学相位调制。

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