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Contribution à l'intégration d'un isolateur optique sur verre : fonctions réciproques et non réciproques de contrôle de la polarisation

机译:有助于将光学隔离器集成到玻璃上:双向和非双向偏振控制功能

摘要

For the past forty years, the growth of fiber telecommunications has led to the development of integrated optical components. However, due to technological issues, a device has not yet been realized: the optical isolator, which propagates light in a single direction. Our work fits into this context. It deals with the integration of an isolator using the Na+/Ag+ ion-exchange technology. The configuration we adopted consists of three elements on chip: a polarization splitter and two 45 ° polarization rotators, one is reciprocal and the other is not. The polarization splitter has been realized in the shape of an asymmetrical Y junction. After a theoretical study, we present the fabrication process and experimental results. State-of-the-art diaphonies of (31.1 ± 0.4) dB and (32.7 ± 0.4) dB have been measured in TE and TM mode over a bandwidth larger than 70 nm. The magneto-optical part of the study has been undertaken in collaboration with the Laboratoire Télécom Claude Chappe (LT2C) from Saint Etienne, France. The Faraday rotator is a selectively buried waveguide on which a magneto-optical material has been deposited using a sol-gel process. A non-reciprocal rotation of 50 ° has been measured, hence validating the hybrid approach. A novel fabrication process is presented for a reciprocal mode-evolution polarization rotator. The process consists in the burring of a waveguide under an electric field presenting a transverse inhomogeneity. We finally propose a fabrication method of the complete optical isolator. It is based on the monolithic integration of the three elements.
机译:在过去的四十年中,光纤通信的发展导致了集成光学组件的发展。然而,由于技术问题,尚未实现一种装置:光学隔离器,其沿单个方向传播光。我们的工作适合这种情况。它使用Na + / Ag +离子交换技术处理隔离器的集成。我们采用的配置由芯片上的三个元件组成:一个偏振分离器和两个45°偏振旋转器,一个是互易的,另一个不是。偏振分离器已经以不对称的Y结的形式实现。经过理论研究,我们介绍了制造过程和实验结果。在TE和TM模式下,在大于70 nm的带宽上已测量到(31.1±0.4)dB和(32.7±0.4)dB的最先进折声。这项研究的磁光部分是与法国圣埃蒂安(Saint Etienne)的LabouratoireTélécomClaude Chappe(LT2C)合作进行的。法拉第旋转器是选择性掩埋的波导,使用溶胶-凝胶工艺在其上沉积了磁光材料。已测量到50°的不可逆旋转,因此验证了混合方法。提出了一种新颖的制造工艺,用于往复模式进化偏振旋转器。该过程包括在呈现横向不均匀性的电场下对波导进行毛刺处理。我们最后提出了一种完整的光隔离器的制造方法。它基于三个元素的整体集成。

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    Parsy François;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 fr
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