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Influence of the Asymmetry of Optical Transitions in a Three-Level Atom on the CPT-resonance

机译:三能级原子中光学跃迁的不对称性对CPT共振的影响

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The characteristics of CPT-resonance, i.e. its width, depth and contrast, are considered for the three-level A-atom interacting with two resonant monochromatic radiation fields. We develop the compurter simulation to investigate the influence on these characteristics of the asymmetric properties of medium: inequality of the dipole moments and inequality of the relaxation rates of population. Both weak and strong radiation fields are considered. For the weak fields the inequality of the Rabi-frequencies is found to influence weakly or even not to influence on the CPT-resonance shape. For the strong fields we found the significant influence of the asymmetry on the shape. We conclude that the CPT-resonance in the strong fields can be utilized as a tool for measure of the optical transitions assymetry. As an example of the real system interacting with two strong radiation fields we consider the characteristics of the GPT-resonance for themagnetic sublevels of states 6P_(1/2), 6P_(3/2) and 7S_(1/2) for Tl-atom.
机译:对于与两个共振单色辐射场相互作用的三能级A原子,应考虑CPT共振的特性,即其宽度,深度和对比度。我们开发计算机模拟来研究对介质不对称特性的这些特征的影响:偶极矩不等式和人口弛豫率不等式。同时考虑了弱和强辐射场。对于弱场,发现拉比频率的不平等对CPT共振形状的影响很小,甚至不受影响。对于强场,我们发现不对称性对形状的重大影响。我们得出的结论是,强场中的CPT共振可以用作测量光学跃迁不对称性的工具。作为一个实际系统与两个强辐射场相互作用的示例,我们考虑了Tl-的状态6P_(1/2),6P_(3/2)和7S_(1/2)的磁子能级的GPT共振特性。原子。

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