Non-stationary coherent population trapping in frequency-modulated fields

V. Derbov, A. S. Lyubimov
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Abstract

Coherent population trapping (CPT) resonance formation is modeled numerically in a three-level Λ -system with one of the near-resonance fields being frequency-modulated. The model is based on density matrix equations in RW approximation with atomic relaxation properly taken into account. Slow modulation is shown to be equivalent to CW excitation with the frequency changed point by point. As the modulation period approaches the relaxation times, the delayed response of the system is shown to cause the CPT resonance shift and reshaping, as well as the appearance of transient oscillations of the energy level populations.
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调频场中非平稳相干种群的捕获
在三能级Λ -系统中,对其中一个近共振场进行调频,对相干种群俘获(CPT)共振形成进行了数值模拟。该模型基于RW近似下的密度矩阵方程,并适当考虑了原子弛豫。慢调制被证明相当于连续波励磁,频率逐点改变。当调制周期接近弛豫时间时,系统的延迟响应导致CPT共振移位和重塑,以及能级居群的瞬态振荡的出现。
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