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Theory of a synchronously pumped mode-locked dye laser in the short pump pulse limit

机译:短泵浦脉冲极限下同步泵浦锁模染料激光器的原理

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摘要

We study the operation of a synchronously pumped mode-locked dye laser when the pump pulse is taken as a Dirac delta function, a limit that is sometimes experimentally reasonable. We find that in this limit the model simplifies considerably and that with further assumptions the physical interpretation of synchronously pumped mode-locked operation becomes apparent. Specifically, our nonlinear dynamical model reduces to the same set of equations that govern a prepumped Q-switched laser, and from this simple picture we are able to derive approximate analytic formulas for the synchronously pumped mode-locked laser pulse width and peak intensity. Additionally, we present a closed-form solution for the output pulse in the limit of zero-cavity-length mismatch between the pump laser and the dye laser.
机译:当泵浦脉冲被视为狄拉克δ函数时,我们研究了同步泵浦锁模染料激光器的工作,该极限有时在实验上是合理的。我们发现,在此限制下,模型显着简化,并且通过进一步的假设,对同步泵浦锁模操作的物理解释变得显而易见。具体来说,我们的非线性动力学模型可以简化为控制预泵浦Q开关激光器的一组方程式,并且从这张简单的图片中,我们可以得出同步泵浦锁模激光脉冲宽度和峰值强度的近似解析公式。此外,在泵浦激光器和染料激光器之间的零腔长度失配的限制下,我们提出了一种输出脉冲的闭式解决方案。

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