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HIGH SPEED 1.55 um LASERS FOR FIBER OPTIC TRANSMISSION

机译:高速1.55 um激光用于光纤传输

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摘要

This paper describes the essential elements for creating a practical wide bandwidth directly modulated laser source. This includes considerations of the intrinsic limitations of the laser structure, due to the resonant frequency and damping of the laser output, together with carrier transport issues to allow carriers in the device active region to be efficiently modulated at high speeds. The use of a P-doped compressively strained multiple-quantum well active region to provide high intrinsic speed and remove transport limitations is described, together with record setting results of 25 GHz modulation bandwidth for a 1.55 /ira Fabry-Perot laser and 26 GHz bandwidth for a 1.55 /xm DFB laser. The challenges of providing high bandwidth electrical connections to the laser on a suitable submount, together with fiber attachment and microwave packaging are discussed. Results of fully packaged 1.55 ^m DFB lasers with 25 GHz modulation bandwidth are shown. Digital modulation of the packaged 1.55 fim DFB including impedance matching is described, and the transient wavelength chirp is presented. This low chirp is reduced further using an optical filter, to provide a 10 GBit/s source that can transmit error free over 38.5 km of standard optical fiber.
机译:本文介绍了创建实用的宽带直接调制激光源的基本要素。由于谐振频率和激光输出的阻尼,这包括对激光器结构固有限制的考虑,以及载流子传输问题,以允许在器件有效区域中的载流子以高速度高效调制。描述了使用P掺杂的压缩应变多量子阱有源区来提供高固有速度并消除传输限制,以及1.55 / ira Fabry-Perot激光器的25 GHz调制带宽和26 GHz带宽的创纪录设置结果1.55 / xm DFB激光器。讨论了在合适的底座上与激光器提供高带宽电连接以及光纤连接和微波封装所面临的挑战。显示了具有25 GHz调制带宽的完全封装的1.55μmDFB激光器的结果。描述了封装的1.55 fim DFB的数字调制,包括阻抗匹配,并给出了瞬态波长chi。使用光学滤波器可以进一步降低这种低chi,从而提供10 GBit / s的信号源,可以在38.5 km的标准光纤上无误差地传输。

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