首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Control of amplification without population inversion in H-2 and Li-2 molecules: three level Ladder, V and Lambda systems
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Control of amplification without population inversion in H-2 and Li-2 molecules: three level Ladder, V and Lambda systems

机译:控制H-2和Li-2分子中的扩增而无种群反转:三能级Ladder,V和Lambda系统

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摘要

We have studied (ab-initio) the feasibility of Amplification Without Population Inversion (AWPI) both numerically and analytically, in H-2 and Li-2 molecules for three different three level schemes e.g. (i) Ladder, (ii) V and (iii) A. We have shown that the shape of the gain profile (gain as a function of the detuning from upper lasing level) and its magnitude are different for these three transition schemes. We have also shown that the strength of AWPI and its variation with detuning can be controlled by choosing different vibrational levels of the molecule as the upper and lower levels for amplification. Thus AWPI can be obtained in a wide range of frequencies considering transitions between different vibrational levels within the same set of electronic states, in contrast to that in atoms. For three level ladder system, time evolution of gain profile shows that for resonant transitions AWPI can be obtained only for short time duration. It has been shown that AWPI is also feasible in presence of Doppler broadening (which is orders of magnitude greater than the spontaneous decay width in H-2 and Li-2 molecules) if the coherent coupling strength is increased by orders of magnitude.
机译:我们已经从数字上和分析上研究了(ab-initio)在H-2和Li-2分子中使用三种不同的三级方案进行扩增而无需进行种群反转的可行性。 (i)阶梯,(ii)V和(iii)A.我们已经证明,对于这三种过渡方案,增益分布图的形状(增益与上激光水平的失谐有关)及其大小是不同的。我们还表明,可以通过选择分子的不同振动水平作为扩增的上限和下限来控制AWPI的强度及其随失谐而变化。因此,与原子中的状态相比,考虑到同一电子状态集内不同振动水平之间的过渡,可以在很宽的频率范围内获得AWPI。对于三级梯形系统,增益曲线的时间演化表明,对于谐振跃迁,AWPI仅在短时间内可获得。已经表明,如果相干耦合强度增加几个数量级,则在多普勒展宽(比H-2和Li-2分子中的自发衰减宽度大几个数量级)的情况下,AWPI也是可行的。

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