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Analysis of originating ultra-short optical dissipative solitary pulsesin the actively mode-locked semiconductor heterolaserswith an external fiber cavity

机译:始发超短光耗散孤立脉冲的分析在主动锁模半导体异质激光器中带有外部纤维腔

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We present an advanced approach to describing low-power trains of bright picosecond optical dissipative solitary pulses with an internal frequency modulation in practically important case of exploiting semiconductor heterolaser operating in near-infrared range in the active mode-locking regime. In the chosen schematic arrangement, process of the active mode-locking is caused by a hybrid nonlinear cavity consisting of this heterolaser and an external rather long single-mode optical fiber exhibiting square-law dispersion, cubic Kerr nonlinearity, and small linear optical losses. Our analysis of shaping dissipative solitary pulses includes three principal contributions associated with the modulated gain, total optical losses, as well as with linear and nonlinear phase shifts. In fact, various trains of the non-interacting to one another optical dissipative solitons appear within simultaneous balance between the second-order dispersion and cubic-law Kerr nonlinearity as well as between active medium gain and linear optical losses in a hybrid cavity. Our specific approach makes possible taking the modulating signals providing non-conventional composite regimes of a multi-pulse active mode-locking. Within our model, a contribution of the appearing nonlinear Ginzburg-Landau operator to the parameters of dissipative solitary pulses is described via exploiting an approximate variational procedure involving the technique of trial functions.
机译:我们提出了一种先进的方法,来描述利用内部频率调制的低皮秒级亮皮秒光耗散孤立脉冲的低功率序列,这在利用半导体杂散激光器在有源锁模模式下工作的实际重要案例中具有重要意义。在所选择的示意图结构中,主动锁模过程是由一个混合非线性空腔引起的,该空腔由该异质激光器和一个外部较长的单模光纤组成,该单模光纤具有平方律色散,立方克尔非线性和较小的线性光学损耗。我们对耗散孤立脉冲整形的分析包括与调制增益,总光损耗以及线性和非线性相移有关的三个主要贡献。实际上,在二阶色散和三次律克尔非线性之间的平衡以及混合腔体中的有源介质增益和线性光学损耗之间的同时平衡中,出现了一系列彼此不相互作用的光耗散孤子。我们的特定方法使采用调制信号提供多脉冲主动锁模的非常规复合方式成为可能。在我们的模型中,通过利用涉及试验功能技术的近似变分程序,描述了出​​现的非线性Ginzburg-Landau算子对耗散孤立脉冲参数的贡献。

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