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The effect of radial radiation transport on intensity characteristics and oscillation frequency of homogeneously broadened lasers

机译:径向辐射传输对强度特性和振荡频率或均匀加宽激光的影响

摘要

In the present treatment of performance characteristics of laser systems, having homogeneous line broadening, a radial gain profile is taken into account. It will be shown that such a profile, which may be induced by the laser beam itself, changes the curvature of the phase front, so that additional radiation transport in the radial direction takes place. It turns out that for many practical systems the radial radiation transport can be comparable to the radiation gained directly from the medium and therefore may not be neglected. Furthermore, it will be shown how the additional radial radiation transport affects the oscillating frequency. Conditions are deduced in which mode competition leads to the survival of the mode having highest radiation intensity. This is not the one closest to the line center as found in systems where radial radiation transport is not taken into account. Treating this problem we approximate medium parameters by a quadratic profile so that the modes have a Gaussian structure. The oscillation frequency, determined on one side by the dispersion of the active medium and on the other side by the spontaneous decay of the upper level, is discussed. The frequency shift is not very sensitive to changes of mirror reflectivity but increases considerably with increasing thermal effects. Numerical calculations show, for instance, that for a semiconfocal system a frequency shift close to 0.5 in units of normalized frequency can be predicted.
机译:在具有均匀线展宽的激光系统的性能特征的当前处理中,考虑了径向增益分布。可以看出,这种可能由激光束本身引起的轮廓改变了相前的曲率,从而发生了沿径向的附加辐射传输。事实证明,对于许多实际系统而言,径向辐射传输可以与直接从介质中获取的辐射相媲美,因此可以忽略不计。此外,将示出附加的径向辐射传输如何影响振荡频率。推断出其中模式竞争导致具有最高辐射强度的模式的生存的条件。这不是在不考虑径向辐射传输的系统中发现的最接近线中心的位置。为了解决这个问题,我们通过二次曲线来近似介质参数,从而使模态具有高斯结构。讨论了振荡频率,一方面由活性介质的分散确定,另一方面由上层的自发衰减确定。频移对反射镜反射率的变化不是很敏感,但是会随着热效应的增加而大大增加。数值计算表明,例如,对于半共焦系统,可以预测以标准化频率为单位接近0.5的频移。

著录项

  • 作者

    Ernst G.J.; Witteman W.J.;

  • 作者单位
  • 年度 1974
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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