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Discrete Mode Lasers for Communications Applications

机译:用于通信应用的离散模式激光器

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摘要

The wavelength spectra of ridge waveguide Fabry Perot lasers can be modified by perturbing the effective refractive index of the guided mode along very small sections of the laser cavity. One way of locally perturbing the effective index of the lasing mode is by etching features into the ridge waveguide such that each feature has a small overlap with the transverse field profile of the unperturbed mode, consequently most of the light in the laser cavity is unaffected by these perturbations. A proportion of the propagating light is however reflected at the boundaries between the perturbed and the unperturbed sections. Suitable positioning of these interfaces allows the mirror loss spectrum of a Fabry Perot laser to be manipulated. In order to achieve single longitudinal mode emission, the mirror loss of a specified mode must be reduced below that of the other cavity modes. Here we review the latest results obtained from devices containing such features. These results clearly demonstrate that these devices exceed the specifications required for a number of FTTH and Datacomms applications, such as GEPON, LX4 and CWDM. As well as this we will also present initial results on the linewidth of these devices.
机译:可以通过沿激光腔的很小部分扰动导模的有效折射率来修改脊形波导Fabry Perot激光器的波长光谱。局部扰动激光模式有效折射率的一种方法是将特征蚀刻到脊形波导中,以使每个特征与未扰动模式的横向场轮廓有很小的重叠,因此,激光腔中的大多数光不受这些扰动。然而,一部分传播的光在被扰动的部分和未被扰动的部分之间的边界处反射。这些接口的适当位置允许对Fabry Perot激光器的反射镜损耗光谱进行控制。为了实现单一纵向模式发射,必须将指定模式的镜面损耗降低到其他腔体模式的镜面损耗以下。在这里,我们回顾了从包含此类功能的设备获得的最新结果。这些结果清楚地表明,这些设备超出了许多FTTH和Datacomms应用(例如GEPON,LX4和CWDM)所需的规格。除此之外,我们还将介绍这些设备线宽的初步结果。

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