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Slow-light interferometry: practical limitations to spectroscopic performance

机译:慢光干涉法:对光谱性能的实际限制

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We investigate how the use of slow-light methods can enhance the performance of various types of spectroscopic interferometers under practical conditions. We show that, while in ideal cases the enhancement of the spectral resolution is equal to the magnitude of the group index of the slow-light medium, the ratio between the associated gain or loss and the group index of the slow-light medium actually determines the spectral resolution under more-general conditions. Moreover, the dispersion of this ratio leads to frequency-dependent spectral resolution, which limits the useful working bandwidth of the interferometer. We also evaluate the performance of interferometers using three specific slow-light processes in terms of the achievable spectral resolution and the effective working finesse. We show that the spectral resolution is typically limited by the characteristic linewidth of each slow-light process and that there is no fundamental upper limit for the effective working finesse. (C) 2008 Optical Society of America
机译:我们研究在实际条件下如何使用慢光方法来增强各种类型的光谱干涉仪的性能。我们表明,尽管在理想情况下,光谱分辨率的增强等于慢光介质的组指数的大小,但相关的增益或损耗与慢光介质的组指数之间的比率实际上决定了在更一般的条件下的光谱分辨率。此外,该比率的色散导致依赖于频率的频谱分辨率,这限制了干涉仪的有用工作带宽。我们还根据可实现的光谱分辨率和有效的工作精细度,使用三种特定的慢光过程来评估干涉仪的性能。我们表明,光谱分辨率通常受每个慢光过程的特征线宽限制,并且有效工作精细度没有基本上限。 (C)2008年美国眼镜学会

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