首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Transient amplification without population inversion in a twofield- driven ladder-type three-level system
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Transient amplification without population inversion in a twofield- driven ladder-type three-level system

机译:在转向梯型三级系统中没有群体反演的瞬态放大

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摘要

In this paper, the transient absorption and particle population in a two-field-driven ladder-type three energy level atomic system is simulated numerically with the density matrix equations which describe the interaction of photon and material. It is found that under the radiation of strong coupling and weak probe fields, the probe absorption shows the character of damped oscillation from the time of laser being switched on to the steady state, which presents phenomenon of full transparency. There exists negative absorption during the variation process. But most of the population is on the ground state energy level all the time. This indicates that amplification without population inversion appears during the course of transparency formation. The driving of the coupling field will produce a time-dependent coherent term. Analyzing the variation of both of the population distribution and coherent term with time, it is found that transient amplification without inversion originates from the quantum interference which is related with coupling field. Thus amplification without inversion can be obtained by controlling the intensity of laser fields and the time for laser interaction.
机译:在本文中,用描述光子和材料相互作用的密度矩阵方程来模拟双场驱动梯型三个能级原子系统中的瞬态吸收和颗粒群。结果发现,在强耦合和弱探针场的辐射下,探针吸收显示了从激光接通到稳态的激光时阻尼振荡的特征,这提出了完全透明度的现象。变异过程中存在负吸收。但大多数人口一直都在地面能量水平上。这表明在透明度形成过程中出现没有群体反演的扩增。耦合场的驱动将产生时间依赖的相干术语。随时间分析了人口分布和相干术语的变化,发现没有反演的瞬态放大源自与耦合场相关的量子干扰。因此,通过控制激光场的强度以及激光相互作用的时间,可以获得没有反转的放大。

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