优化后的两段相位可调谐DFB激光器无热倾角的平坦调频响应

J. Jacquet, J. Provost, M. Sotom, O. Gautheron, F. Poingt, O. Le Gouezigou, D. Leclerc, C. Labourie, J. Benoit
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引用次数: 1

摘要

从理论上和实验上指出,双有源截面激光器的光子分布对器件的调频响应有很大的影响。基于频移键控(FSK)的光通信系统要求激光源具有高调频效率以实现低杂散调幅,高带宽以实现高比特率操作,平坦调频响应以避免长时间传输数据序列引起的衰减。标准的分布式反馈(DFB)激光器不能完全满足这些要求,主要是因为在相对较低的频率下,热效应会导致调频响应的相位反转。为了克服这个问题,提出了一种新的两段DFB结构,发射频率为1.5 /spl mu/m,具有高调频灵敏度和高达1 GHz的平坦调频响应。这种结构的设计依赖于对沿腔不均匀光子分布效应的最佳利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flat FM response without thermal dip for an optimized two section phase tunable DFB laser
The authors point out both theoretically and experimentally that photon distribution in two-active section lasers can greatly influence the FM response of such devices. Optical communication systems based on frequency shift keying (FSK) require laser sources featuring high FM efficiency for low spurious amplitude modulation, high bandwidth for high bit rate operation and flat FM response to avoid any degradation induced by long transmitted data sequences. These requirements are not fully met by standard distributed feedback (DFB) lasers, mainly because thermal effects induce a dip with phase inversion in the FM response at a relatively low frequency. To overcome this problem, a new two-segment DFB structure is proposed emitting at 1.5 /spl mu/m with high FM sensitivity and flat FM response up to 1 GHz. The design of this structure relies on the optimum use of the effect of the inhomogeneous photon distribution along the cavity.<>
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