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首页> 外文期刊>American Journal of Optics and Photonics >A research paper on the performance analysis of a Self-mode Locking high power linearly polarised fiber laser
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A research paper on the performance analysis of a Self-mode Locking high power linearly polarised fiber laser

机译:自锁模高功率线性偏振光纤激光器性能分析研究论文

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In this research a design for high power linearly polarized all-fiber linear cavity lasers with self-mode-locking is presented, and a new theoretical model based on a Nonlinear Schrodinger Equation (NLSE) is developed and implemented on the MATLAB platform. For the design of cavity, Polarization Maintaining (PM) fibers for both the gain medium and the Fiber Bragg Gratings (FBGs) is implemented. The FBG pairs are used to select the lasing wavelength and polarization. The fiber lasers incorporate specially designed FBGs to achieve an extinction ratio larger than 23 dB. The proposed configuration is based on Non-Linear Polarization (NPR) using PM Yb-doped active fiber and two matching FBGs to form the laser cavity. The combination of nonlinearity, gain, and birefringence in the cavity made the laser generate mode-locked pulses in the picosecond range and with high average output power. Experimental data and numerical simulations of the self-mode-locking fiber laser are presented. Main parameters affecting mode-locked pulses and its envelope are identified. The model proposed here explains the self-mode-locking mechanism and the source of the pulse envelope. In this model, it is proven that self-phase modulation (SPM) plays an essential role in pulse formation and shaping.
机译:在这项研究中,提出了一种具有自锁模功能的高功率线性偏振全光纤线性腔激光器的设计,并基于MATLAB平台开发了基于非线性薛定inger方程(NLSE)的新理论模型。对于腔的设计,实现了增益介质和布拉格光栅(FBG)的保偏(PM)光纤。 FBG对用于选择激光波长和偏振。光纤激光器采用了专门设计的FBG,以实现大于23 dB的消光比。提出的配置基于非线性偏振(NPR),该偏振使用PM Yb掺杂的有源光纤和两个匹配的FBG形成激光腔。腔中的非线性,增益和双折射的结合使激光器产生了皮秒范围内的锁模脉冲,并具有较高的平均输出功率。给出了自锁模光纤激光器的实验数据和数值模拟。确定影响锁模脉冲及其包络的主要参数。这里提出的模型解释了自锁模机制和脉冲包络的来源。在该模型中,已证明自相位调制(SPM)在脉冲形成和整形中起着至关重要的作用。

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