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Analysis of Active Hybrid Fiber-Semiconductor Devices for Optical Networks

机译:光网络有源混合光纤半导体器件的分析

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We present an evanescent coupling method between a semiconductor antiresonant reflecting optical waveguide and a side-polished fiber and apply it to the design and fabrication of several hybrid fiber-semiconductor devices. Unique properties and advantages of these devices over conventional fiber-coupled modules are discussed in detail. Previous realizations of this coupling method have all been one-dimensional, as no lateral confinement mechanism was used. In this paper, we have successfully achieved great improvements in efficiency of coupling by implementing lateral confinement as well. In particular, we demonstrate the first side-coupled fiber semiconductor laser based on this technology, coupling more than 3 mW of power at 850 nm directly into a 5/125 mum single-mode fiber.
机译:我们提出了一种在半导体反谐振反射光波导和侧抛光光纤之间的e逝耦合方法,并将其应用于几种混合型光纤半导体器件的设计和制造。详细讨论了这些设备相对于传统光纤耦合模块的独特性能和优势。该耦合方法的先前实现都是一维的,因为没有使用横向约束机制。在本文中,我们还通过实施横向约束成功地实现了联接效率的极大提高。特别是,我们展示了基于该技术的首款侧耦合光纤半导体激光器,它将850 nm处超过3 mW的功率直接耦合到5/125 um单模光纤中。

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