利用光纤反馈路径中的自相位调制增强多量子阱激光发射机中的混沌载波带宽

Yang Senlin
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引用次数: 0

摘要

我们从理论上和数值上证明了一种利用光纤圆路中的自相位调制(SPM)效应提高多量子阱激光发射机混沌载流子带宽的新方法。从理论上推导出由SPM效应引起的非线性相移对激光器的增益和带宽增强系数有影响。光纤的二阶非线性效应丰富了激光振幅和相位的变化,而非线性相移产生了大量的新频率,从而扩大了带宽。数值结果表明,在SPM效应作用下,混沌激光的新带宽比无光纤路径时提高了4倍,弛豫振荡频率比无光纤路径时提高了2倍。数值计算发现,混沌带宽的增强明显取决于光纤长度、光纤输入功率、耦合反馈比和二阶非线性系数的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancement of a Chaotic Carrier Bandwidth in a Multi-quantum-well Laser Transmitter Using Self-Phase Modulation in an Optical Fiber Feedback Path
We demonstrate theoretically and numerically a novel method of enhancing the bandwidth of a chaotic carrier from a multi-quantum-well laser transmitter using self-phase modulation (SPM) effect in an optical fiber round path. It is deduced theoretically that the nonlinear phase shift arisen from SPM effect has an impact on the gain and bandwidth enhancement factor of the laser. The second order nonlinear effect of the fiber enriches the varieties of the amplitude and the phase of the laser while the nonlinear phase shift produces a lot of new frequencies, which can spread the bandwidth. Numerical results reveal that, with SPM effect, the new bandwidth be can enhanced 4 times more than the bandwidth without the optical fiber path, and the relaxation oscillation frequency of the chaotic laser is increased to being 2 times more than that of the laser without the optical fiber path. It is found numerically that the enhancement of the chaotic bandwidth depends evidently on the optical fiber length, the power into the optical fiber, the coupling-feedback ratio and the second order nonlinear coefficient affect.
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