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Three-dimensional integration of passive functions on glass by means of selectively buried waveguides and multiple ion-exchanges

机译:通过选择性掩埋波导和多重离子交换的玻璃上无源功能的三维集成

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Ion-exchange on glass has been successfully used for more than twenty years to realize integrated optics devices such as wavelength multiplexers, splitters, optical amplifiers, lasers or sensors. One of the major issue is today to integrate more functions on a single chip which is usually realized be reducing the dimensions of the waveguides. Nonetheless this reduction is intrinsically limited by the maximum index variation achievable. For this reason, we propose and investigate in this article the realization of 3D structures where waveguides are integrated vertically instead of horizontally. Based on the selective burial of ion-exchanged waveguides and the cascading of multiple ion-exchanges, the realization of "vertical" asymmetric and symmetric Y-junctions have been investigated theoretically.
机译:玻璃上的离子交换已成功使用20多年以实现诸如波长多路复用器,分离器,光放大器,激光器或传感器等集成光学器件。 今天主要问题之一是在单个芯片上集成更多功能,该芯片通常意识到是降低波导的尺寸。 尽管如此,这种减少是由可实现的最大指标变异的本质上限制。 因此,我们提出并调查了本文的实现,实现了波导而不是水平集成的3D结构。 基于离子交换的波导的选择性埋下和多个离子交换的级联,从理论上研究了“垂直”不对称和对称Y-结的实现。

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