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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Numerical investigation of soliton molecules with variable separation in passively mode-locked fiber lasers
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Numerical investigation of soliton molecules with variable separation in passively mode-locked fiber lasers

机译:被动锁模光纤激光器中可变分离的孤子分子的数值研究

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摘要

Soliton molecules evolution is numerically investigated in a passively mode-locked fiber laser based on the nonlinear polarization rotation (NPR) technique. Peak-to-peak separation of soliton molecules can be controlled by changing either pump strength or cavity linear phase delay appropriately. Moreover, soliton molecules with intensity-independent evolution, separation-independent evolution and large intensity-vibrating evolution are numerically found, respectively. The characteristics of soliton molecules evolution versus linear phase delay or pump strength are given. Periodic stable evolution regimes are found. The separation-controllable soliton molecules can be attributed to the mutual effects of phase delay, Kerr nonlinearity and other parameters of the cavity.
机译:在基于非线性偏振旋转(NPR)技术的被动锁模光纤激光器中,对孤子分子的演化进行了数值研究。孤子分子的峰峰分离可以通过适当改变泵浦强度或腔体线性相位延迟来控制。此外,分别找到了具有强度无关的演化,分离无关的演化和大强度振动的演化的孤子分子。给出了孤子分子演化相对于线性相位延迟或泵浦强度的特征。发现了周期性的稳定演化机制。分离可控的孤子分子可归因于相位延迟,克尔非线性和腔体其他参数的相互影响。

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