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Multilevel coherence effects in a two-level atom driven by a trichromatic field

机译:三色场驱动的两能级原子中的多能级相干效应

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摘要

We study the absorption and dispersion properties of a weak probe field monitoring a two-level atom driven by a trichromatic field. We calculate the steady-state linear susceptibility and find that the system can produce a number of multilevel coherence effects predicted for atoms composed of three and more energy levels. Although the atom has only one transition channel, the multilevel effects are possible because there are multichannel transitions between dressed states induced by the driving field. In particular, we show that the system can exhibit multiple electromagnetically induced transparency and can also produce a strong amplification at the central frequency which is not attributed to population inversion in both the atomic bare states and in the dressed atomic states. Moreover, we show that the absorption and dispersion of the probe field is sensitive to the initial relative phase of the components of the driving field. In addition, we show that the group velocity of the probe field can be controlled by changing the initial relative phases or frequencies of the driving fields and can also be varied from subluminal to superluminal. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 60]
机译:我们研究了弱探针场的吸收和色散特性,该弱探针场监视由三色场驱动的两级原子。我们计算了稳态线性磁化率,发现该系统可以产生许多由三个或更多能级组成的原子预测的多级相干效应。尽管原子只有一个过渡通道,但多级效应是可能的,因为在驱动场感应的整修状态之间存在多通道过渡。特别地,我们表明该系统可以表现出多种电磁感应的透明性,并且还可以在中心频率上产生强大的放大率,而这不归因于在裸原子状态和整修原子状态下的粒子数反转。此外,我们表明探测场的吸收和色散对驱动场分量的初始相对相位敏感。另外,我们表明,可以通过改变驱动场的初始相对相位或频率来控制探测场的群速度,并且还可以从腔内到腔内变化。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:60]

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