This article demonstrates the method of simulating the calibration curve of hydrogen atomic spectrum using the Lorentz dispersion relation. 本文介绍了如何利用折射率的洛伦茨色散关系拟合氢原子光谱实验的定标曲线的方法。
Influence of atomic coherence on the absorption-dispersion relation in V-type energy-level scheme 在V型系统中原子相干对吸收-色散关系的影响
Atomic dispersion depends on the squeezing direction and coherent excitation direction of the driving field. 而原子的色散行为明显依赖于光场起伏的压缩方向与振幅的相干激发方向。
Atomic absorption and dispersion in squeezed light field 原子在压缩光场中的吸收与色散
In general, light can be absorbed by the atomic system and the dispersion is great when the probe light interacts with medium. 一般情况下,当一束探测光与原子相互作用的时候,探测光将会被原子所吸收,并表现出很大的色散。
Taking example for A-type three-level atomic system, the theoretical model of EIT effect was given using semi-classical theory. The absorption and dispersion properties of EIT medium were also analyzed. 以A型三能级原子系统为例,用半经典理论给出了EIT效应的理论模型,分析了EIT介质的吸收和色散特性。
The coherently-prepared atomic medium can be applied extensively in many optics areas because of its ideal optical properties of low absorption, steep dispersion and enhanced nonlinearity. 而利用量子相干制各的相干原子介质更是以其小吸收、强色散、高非线性折射率的理想特性被广泛地应用在众多光学领域中。