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Transient responses of transparency in a far-off resonant atomic system

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【作者】 胡正峰杜春光邓见辽王育竹

【Author】 Hu Zheng-Feng;Du Chun-Guang;Deng Jian-Liao;Wang Yu-Zhu;The Key Laboratory of Quantum Optics,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences;Department of Physics,Tsinghua University;

【机构】 The Key Laboratory of Quantum Optics,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of SciencesDepartment of Physics,Tsinghua University

【摘要】 Transient coherent oscillations in a closed Λ system under far-off resonant Raman fields were investigated theoretically. It has been found that the coherent superposition of the ground states can be formed due to the absorption even for initial maximal mixed ground states. The absorption oscillates with a period depending on the two-photon detuning when the system is initially in a transparent state and the two-photon Raman detuning is suddenly changed. The amplitude of the absorption decays with the decay rate of the ground states, which is different from the case when the lasers are applied resonantly. These transient coherent oscillations can be used to measure the relaxation rate of the ground states.

【Abstract】 Transient coherent oscillations in a closed Λ system under far-off resonant Raman fields were investigated theoretically. It has been found that the coherent superposition of the ground states can be formed due to the absorption even for initial maximal mixed ground states. The absorption oscillates with a period depending on the two-photon detuning when the system is initially in a transparent state and the two-photon Raman detuning is suddenly changed. The amplitude of the absorption decays with the decay rate of the ground states, which is different from the case when the lasers are applied resonantly. These transient coherent oscillations can be used to measure the relaxation rate of the ground states.

【基金】 Project supported by the Knowledge Innovation Program of the Chinese Academy of Sciences and the National Basic Research Program of China
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2014年05期
  • 【分类号】O562.3
  • 【下载频次】20
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