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Gain and Lasing in Two-Level Optically Dense Resonance Media without Population Inversion Based on Cooperative Phenomena upon Interaction of Light with Matter

机译:基于光与物质相互作用的合作现象的无人口反转的两级光致密谐振介质的增益和衰减

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摘要

A new approach to the development of sources of coherent radiation is studied both theoretically and experimentally. The approach is based on parametric excitation of collective modes of the "field + atoms" system in two-level resonance media without population inversion, with the super-critical coupling between the field and matter subjected to stimulated modulation. The theoretical results include a description of computer simulation of the gain and stimulated emission based on quantitative formalism of the semiclassical theory of laser physics (Maxwell-Bloch equations). Experimental study of coherent light amplification in optically dense media without population inversion was carried out using a multimode pulsed dye laser in the two-wave pumpprobe configuration. As the absorbing medium, we used the positive column of a glow discharge with metastable Ne atoms. A qualitative agreement is demonstrated between the data of numerical simulation and experimental spectral characteristics and dynamics of coherent amplification and lasing.
机译:理论上和实验上都研究了开发相干辐射源的新方法。该方法基于在不具有总体反转的两级共振介质中“场+原子”系统的集体模态的参数激发,并且场与受激调制的物质之间具有超临界耦合。理论结果包括基于激光物理学半经典理论(Maxwell-Bloch方程)的定量形式主义对增益和受激发射进行计算机模拟的描述。使用两波泵浦探针配置中的多模脉冲染料激光,在不发生种群反转的情况下,在光致密介质中进行相干光放大的实验研究。作为吸收介质,我们使用了带有亚稳态Ne原子的辉光放电的正极。数值模拟的数据和实验光谱特性以及相干放大和激射的动力学之间显示出定性的一致性。

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