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Optimization of atomic Faraday filters in the presence of homogeneous line broadening.

机译:在均匀线展宽的情况下优化原子法拉第滤光片。

摘要

We show that homogeneous line broadening drastically affects the performance of atomic Faraday filters. We study the effects of cell length and find that the behaviour of 'line-centre' filters are quite different from 'wing-type' filters, where the effect of self-broadening is found to be particularly important. We use a computer optimization algorithm to find the best magnetic field and temperature for Faraday filters with a range of cell lengths, and experimentally realize one particular example using a micro-fabricated 87Rb vapour cell. We find excellent agreement between our theoretical model and experimental data.
机译:我们表明,均匀线展宽会极大地影响原子法拉第滤波器的性能。我们研究了细胞长度的影响,发现“线心”过滤器的行为与“机翼型”过滤器有很大不同,后者发现自增宽的影响尤为重要。我们使用一种计算机优化算法来为法拉第滤光片找到具有一定晶胞长度的最佳磁场和温度,并使用微细加工的87Rb蒸气晶胞实验性地实现了一个特定示例。我们在理论模型和实验数据之间找到了极好的一致性。

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