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Optimization of an Integrated Optic Broadband Duplexer for 0.8/1.3 Micrometers Applications

机译:用于0.8 / 1.3微米应用的集成光宽带双工器的优化

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These last years, the growth of data traffic has increased the interest for broadband integrated optic devices. Their applications include, for example, the fiber communications on a single fiber by adding the transmission capacity of two optical telecommunication windows for Local Area Networks (LAN) and Wide Area Networks (WAN) or by combining pump and signal wavelengths in rare earth doped integrated optical amplifiers. A promising technology to realize those devices is ion-exchange on glass. Indeed, it allows the integration of different functions in a glass substrate with efficient results and a better compatibility in fiber systems with a low cost. We propose in this paper an original broadband duplexer based on a leaky structure. First, the physical principle of the component is explained. The core of the structure is a leaky zone which involves a non-resonant coupling and ensures a broadband spectral behavior to the component. Then, the broadband duplexer is presented and the focus is specially made on the improvement of the outputs crosstalk through the suppression of parasitical back reflections. Theoretical optimization and validation by simulations are presented. Finally, perspectives of this work are proposed.
机译:在过去几年中,数据流量的增长增加了宽带集成光学设备的利益。例如,它们的应用包括例如通过为局域网(LAN)和广域网(WAN)的两个光电信窗口的传输容量或通过组合稀土掺杂集成的泵和信号波长来增加单光纤的光纤通信光放大器。有希望的技术实现这些设备是在玻璃上的离子交换。实际上,它允许在玻璃基板中与具有低成本的纤维系统中的有效结果和更好的兼容性集成不同功能。我们在本文中提出了一种基于泄漏结构的原始宽带双工器。首先,解释组件的物理原理。结构的核心是泄漏区域,其涉及非谐振耦合并确保组件的宽带光谱行为。然后,提出了宽带双工器,并专门对输出串扰的改进来通过抑制寄生反射反射来专门对焦点进行专门制造。呈现了仿真的理论优化和验证。最后,提出了这项工作的观点。

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