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Coherent population transfer and superposition of atomic states via stimulated Raman adiabatic passage using an excited-doublet four-level atom

机译:通过使用激发双态四能级原子的受激拉曼绝热通道,相干的种群转移和原子态的叠加

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Coherent population transfer and superposition of atomic states via a technique of stimulated Raman adiabatic passage in an excited-doublet four-level atomic system have been analyzed. It is shown that the behavior of adiabatic passage in this system depends crucially on the detunings between the laser frequencies and the corresponding atomic transition frequencies. Particularly, if both the fields are tuned to the center of the two upper levels, the four-level system has two degenerate dark states, although one of them contains the contribution from the excited atomic states. The nonadiabatic coupling of the two degenerate dark states is intrinsic, it originates from the energy difference of the two upper levels. An arbitrary superposition of atomic states can be prepared due to such nonadiabatic coupling effect.
机译:通过激发双峰四能级原子系统中受激拉曼绝热通道的技术,分析了相干的人口转移和原子态的叠加。结果表明,绝热通道的行为在很大程度上取决于激光频率与相应的原子跃迁频率之间的失谐。特别地,如果两个场都被调谐到两个较高能级的中心,则四能级系统将具有两个简并的暗态,尽管其中之一包含激发原子态的贡献。两个简并暗态的非绝热耦合是固有的,它源自两个较高能级的能量差。由于这种非绝热耦合效应,可以制备原子态的任意叠加。

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