利用有限带宽驱动场增强无反转原子介质的增益

G. Vemuri
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引用次数: 0

摘要

我们探索了通过用有限带宽(光谱彩色)泵浦取代通常的非相干泵浦来提高无反转方案中激光增益的可能性。对阶梯和λ结构中的三个能级原子进行了建模,我们发现用部分相干泵代替非相干泵可将增益放大多达4倍。结果通过蒙特卡罗模拟得到,对于有色泵,密度矩阵方程具有朗之万方程的形式。我们发现,对于给定的原子场参数集,相干泵浦的增益大于非相干泵浦的增益,而部分相干泵浦的增益最大。彩色泵浦的频率在确定可获得的最佳增益方面起着重要作用。
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Enhancement of gain in inversionless atomic media using finite bandwidth driving fields
We explore the possibility of enhancing the gain in lasing without inversion schemes by replacing the usual incoherent pump with a finite bandwidth (spectrally coloured) pump. Three level atoms in the ladder and lambda configuration are modelled and we find that replacing the incoherent pump with a partially coherent pump amplifies the gain by as much as a factor of 4. The results are obtained via Monte-Carlo simulations of the density matrix equations, which, for a coloured pump, have the form of Langevin equations. We find that for a given set of atom-field parameters, the gain for coherent pumping is larger than for incoherent pumping, and that maximum gain is obtained for a partially coherent pump. The frequency of the coloured pump plays an important role in determining the optimum gain that can be obtained.
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