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Transient self-action of periodically modulated laser beams

机译:定期调制激光束的瞬态自动

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We study the self-action of an amplitude-modulated beam in a two-level saturable absorbing medium. We also consider the radial quadratic dependence of the linear refraction index to apply the results to doped waveguides. As the modulation period approaches the relaxation times, the medium response is no more instantaneous, so that one should solve the full set of Maxwell-Bloch equations. We propose a second-order scheme with the Gauss-Laguerre transformation of the transverse field pattern. A simplified approach based on the synchronous interaction approximation is used for thin layers. We analyze the transient behavior of the medium response and its manifestation in the modulation of the beam diffracting after a thin saturable absorber. Nonlinear distortions of the modulation signal passed through a doped waveguide appeared to be unexpectedly small compared with those of the local polarization and population difference.
机译:我们研究了两个可饱和吸收介质中的幅度调制光束的自动作。我们还考虑线性折射率指数的径向二次依赖性,以将结果应用于掺杂波导。随着调制周期接近松弛时间,介质响应不再是瞬时的,因此应该解决全套Maxwell-Bloch方程。我们提出了一种二阶方案,具有横向场模式的高斯-Laguerre转换。基于同步交互近似的简化方法用于薄层。我们分析了介质响应的瞬态行为及其表现在薄饱和吸收剂之后的束衍射的调节中。与局部极化和人口差相比,通过掺杂波导的调制信号的非线性变形似乎意外地小。

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