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The effect of atomic coherence on absorption in four-level atomic systems: an analytical study

机译:原子相干对四能级原子系统吸收的影响:分析研究

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摘要

The absorption profile of a four- level ladder atomic system interacting with three driving fields is studied perturbatively and analytical results are presented. Numerical results where the driving field strengths are treated up to all orders are presented. The absorption features are studied in two regimes - (i) the weak middle transition coupling, i.e. Omega(2) Omega(1,3) and (ii) the strong middle transition coupling Omega(2) Omega(1,3). In case (i), it is shown that the ground- state absorption and the saturation characteristics of the population of level vertical bar 2 > reveal deviation due to the presence of upper level couplings. In particular, the saturation curve for the population of level vertical bar 2 > shows a dip for Omega(1) = Omega(3). While the populations of levels vertical bar 3 > and vertical bar 4 > show a maxima when this resonance condition is satisfied. Thus the resonance condition provides a criterion for maximally populating the upper levels. A second-order perturbation calculation reveals the nature of these minima (maxima). In the second case, I report two important features: (a) filtering of the Aulter-Townes doublet in the three-peak absorption profile of the ground state, which is achieved by detuning only the uppermost coupling field and (b) control of line- width by controlling the strength of the upper coupling fields. This filtering technique coupled with the control of linewidth could prove to be very useful for high resolution studies.
机译:扰动地研究了与三个驱动场相互作用的四能级原子系统的吸收分布,并给出了分析结果。给出了将驱动场强度处理至所有阶数的数值结果。在两种情况下研究了吸收特征-(i)弱中间跃迁耦合,即Omega(2) Omega(1,3)和(ii)强烈中间跃迁耦合Omega(2) Omega(1, 3)。在情况(i)中,表明水平状态竖线2>的总体的基态吸收和饱和特性揭示了由于存在较高水平的耦合而引起的偏差。特别是,水平竖线2>的总体饱和曲线显示Omega(1)= Omega(3)的下降。当满足此共振条件时,垂直条3>和垂直条4>的水平总体显示最大值。因此,共振条件提供了最大程度地填充高层的标准。二阶扰动计算揭示了这些最小值(最大值)的性质。在第二种情况下,我报告了两个重要特征:(a)在基态的三峰吸收剖面中对Aulter-Townes双峰进行滤波,这是通过仅使最高耦合场失谐和(b)控制线路来实现的-通过控制上部耦合场的强度来实现宽度。这种滤波技术与线宽的控制相结合,可能对高分辨率研究非常有用。

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