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Mode-locked laser pulse sources for wavelength division multiplexing

机译:用于波分复用的模式锁定激光脉冲源

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Recent theoretical investigations have demonstrated that the stability of mode-locked solution of multiple fre-quency channels depends on the degree of inhomogeneity in gain saturation. In this paper, these results are generalized to determine conditions on each of the system parameters necessary for both the stability and existence of mode-locked pulse solutions for an arbitrary number of frequency channels. In particular, we find that the parameters governing saturable intensity discrimination and gain inhomogeneity in the laser cavity also determine the position of bifurcations of solution types. These bifurcations are completely characterized in terms of these parameters. In addition to influencing the stability of mode-locked solutions, we determine a balance between cubic gain and quintic loss, which is necessary for existence of solutions as well. Furthermore, we determine the critical degree of inhomogeneous gain broadening required to support pulses in multiple frequency channels.
机译:最近的理论研究表明,多次频率频道的模式锁定溶液的稳定性取决于增益饱和度的不均匀程度。在本文中,这些结果是推广的,以确定用于任意数量的频率信道的模式锁定脉冲解的稳定性和存在所需的每个系统参数的条件。特别地,我们发现控制可饱和强度辨别和激光腔内增益不均匀性的参数也确定了解决方案类型的分叉的位置。这些分叉在这些参数方面完全表征。除了影响模式锁定解决方案的稳定性之外,我们还确定立方增益和Quintic损失之间的平衡,这对于存在解决方案也是必要的。此外,我们确定在多个频率信道中支持脉冲所需的临界程度的不均匀增益扩展。

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