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Vacuum-Induced Quantum Interference in a Trapped Λ-Configuration Three-Level System

Vacuum-Induced Quantum Interference in a Trapped Λ-Configuration Three-Level System
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摘要 In consideration of quantization of centre-of-mass motion, we derive the second-order solution of the dynamic equation of a Λ-configuration three-level atom confined in an approximately harmonic trap by using the timedependent perturbation theory. It is found that there are a series of dark lines in the second-order probability spectrum with multi-peak structures, which is the result of the quantum interference from the same vacuum mode in the spontaneous decay process of the trapped atom from the upper level to the two nearby lower levels. Our study shows that the second-order spectrum may be modified by the oscillation frequency Ω of the trap and the frequency difference △ between two lower levels of the three-level atom, and the depth of the dark lines from the vacuum-induced quantum interference effect is strongly dependent on the above two parameters (Ω and △ ). In consideration of quantization of centre-of-mass motion, we derive the second-order solution of the dynamic equation of a Λ-configuration three-level atom confined in an approximately harmonic trap by using the timedependent perturbation theory. It is found that there are a series of dark lines in the second-order probability spectrum with multi-peak structures, which is the result of the quantum interference from the same vacuum mode in the spontaneous decay process of the trapped atom from the upper level to the two nearby lower levels. Our study shows that the second-order spectrum may be modified by the oscillation frequency Ω of the trap and the frequency difference △ between two lower levels of the three-level atom, and the depth of the dark lines from the vacuum-induced quantum interference effect is strongly dependent on the above two parameters (Ω and △ ).
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2005年第11期2820-2823,共4页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant Nos 10174050, 10374029 and 10434060, the Shanghai Priority Academic Discipline and the 211 Foundation of the Ministry of Education of China.
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