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Ultranarrow-bandwidth filter based on a thermal EIT medium

机译:基于热EIT介质的超宽带滤波器

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摘要

We present high-contrast electromagnetically-induced-transparency (EIT) spectra in a heated vapor cell of single isotope 87Rb atoms. The EIT spectrum has both high resonant transmission up to 67% and narrow linewidth of 1.1 MHz. We get rid of the possible amplification resulted from the effects of amplification without population inversion and four-wave mixing. Therefore, this high transmitted light is not artificial. The theoretical prediction of the probe transmission agrees well with the data and the experimental parameters can be derived reasonably from the model. Such narrow and high-contrast spectral profile can be employed as a high precision bandpass filter, which provides a significant advantage in terms of stability and tunability. The central frequency tuning range of the filter is larger than 100 MHz with out-of-band blocking ≥15 dB. This bandpass filter can effectively produce light fields with subnatural linewidth. Nonlinearity associating with the narrow-linewidth and high-contrast EIT profile can be very useful in the applications utilizing the EIT effect.
机译:我们在单个同位素 87 Rb原子的加热蒸汽电池中呈现高对比度的电磁感应透明(EIT)光谱。 EIT频谱具有高达67%的高谐振传输率和1.1 MHz的窄线宽。我们摆脱了在没有种群反转和四波混频的情况下,由于扩增的影响而可能导致的扩增。因此,这种高透射光不是人造的。探针传输的理论预测与数据非常吻合,并且可以从模型中合理得出实验参数。这种窄且高对比度的光谱轮廓可以用作高精度带通滤波器,这在稳定性和可调性方面提供了明显的优势。滤波器的中心频率调谐范围大于100 MHz,带外阻塞≥15dB。该带通滤波器可以有效地产生具有自然线宽的光场。与窄线宽和高对比度EIT轮廓相关联的非线性在利用EIT效果的应用中非常有用。

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