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Broadening and intensity redistribution in the Na(3p) hyperfine excitation spectra due to optical pumping in the weak excitation limit

机译:Na(3p)超细激发光谱中的光激发在弱激发极限中的展宽和强度重新分布

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摘要

Detailed analysis of spectral line broadening and variations in relative intensities of hyperfine spectral components due to optical pumping is presented. Hyperfine levels of sodium 3p(1/2) and 3p(3/2) levels are selectively excited in a supersonic beam at various laser intensities under the conditions when optical pumping time is shorter than transit time of atoms through the laser beam. The excitation spectra exhibit significant line broadening at laser intensities well below the saturation intensity, and redistribution of intensities of hyperfine spectral components is observed, which in some cases is contradicting with intuitive expectations. Theoretical analysis of the dynamics of optical pumping shows that spectral line broadening sensitively depends on the branching coefficient of the laser-driven transition. Analytical expressions for branching ratio dependent critical Rabi frequency and critical laser intensity are derived, which give the threshold for onset of noticeable line broadening by optical pumping. The critical laser intensity has its smallest value for transitions with branching coefficient equal to 0.5, and it can be much smaller than the saturation intensity. Transitions with larger and smaller branching coefficients are relatively less affected. The theoretical excitation spectra were calculated numerically by solving density matrix equations of motion using the split propagation technique, and they well-reproduce the observed effects of line broadening and peak intensity variations. The calculations also show that presence of dark (i.e., not laser coupled) Zeeman sublevels in the lower state results in effective branching coefficients which vary with laser intensity and differ from those implied by the sum rules, and this can lead to peculiar changes in peak ratios of hyperfine components of the spectra.
机译:给出了对光谱线展宽和由于光泵激而产生的超精细光谱分量的相对强度变化的详细分析。在光泵浦时间短于原子通过激光束的传播时间的条件下,在各种激光强度下,超声束中的钠离子3p(1/2)和3p(3/2)的超细能级被选择性激发。激发光谱在远低于饱和强度的激光强度处显示出明显的谱线展宽,并且观察到超精细光谱成分强度的重新分布,这在某些情况下与直观预期相矛盾。对光泵浦动力学的理论分析表明,光谱线变宽敏感地取决于激光驱动跃迁的分支系数。推导了依赖于分支比的临界拉比频率和临界激光强度的解析表达式,这些表达式给出了通过光泵浦引起明显的谱线展宽的阈值。对于分支系数等于0.5的跃迁,临界激光强度具有最小值,并且可以比饱和强度小得多。具有较大和较小分支系数的过渡受到的影响相对较小。通过使用分裂传播技术求解运动的密度矩阵方程,可以对理论激发光谱进行数值计算,并且可以很好地再现观察到的谱线展宽和峰强度变化的影响。计算还表明,在较低状态下存在暗(即非激光耦合)塞曼子能级会导致有效分支系数,该分支系数随激光强度而变化,并且与和规则所隐含的分支系数不同,这可能导致峰的奇特变化光谱的超精细成分的比率。

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