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Towards a random laser with cold atoms

机译:走向带有冷原子的随机激光

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摘要

Atoms can scatter light and they can also amplify it by stimulated emission. From this simple starting point, we examine the possibility of realizing a random laser in a cloud of laser-cooled atoms. The answer is not obvious as both processes (elastic scattering and stimulated emission)seem to exclude one another: pumping atoms to make them behave as an amplifier drastically reduces their scattering cross-section. However, we show that even the simplest atom model allows the efficient combination of gain and scattering. Moreover, the supplementary degrees of freedom that atoms offer allow the use of several gain mechanisms, depending on the pumping scheme. We thus first study these different gain mechanisms and show experimentally that they can induce (standard) lasing. We then present how the constraint of combining scattering and gain can be quantified, which leads to an evaluation of the random laser threshold. The results are promising and we draw some prospects for a practical realization of a random laser with cold atoms.
机译:原子可以散射光,还可以通过受激发射来放大光。从这个简单的起点,我们研究了在激光冷却的原子云中实现随机激光的可能性。答案并不明显,因为这两个过程(弹性散射和受激发射)似乎相互排斥:泵浦原子以使其表现出与放大器一样的作用,从而极大地减小了其散射截面。但是,我们证明,即使是最简单的原子模型也可以有效地组合增益和散射。此外,原子提供的补充自由度允许使用几种增益机制,具体取决于泵浦方案。因此,我们首先研究这些不同的增益机制,并通过实验证明它们可以诱导(标准)激光发射。然后,我们介绍如何量化结合散射和增益的约束,从而导致对随机激光阈值的评估。结果令人鼓舞,我们为具有冷原子的随机激光器的实际实现绘制了一些前景。

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