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Doppler Frequency Redistribution upon Coherent Photon Emission by Atoms in an Optically Dense Medium

机译:多普勒频率再分布在光学致密介质中的原子相干光子发射

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摘要

The problem of transfer of line radiation in sodium vapor under photoexcitation by laser radiation of a resonance line with wavelength = 589.6 nm is numerically solved. The influence of Doppler frequency shifts on photon emission coherent in the atomic reference system is taken into account in the formation of an emission line profile using the model of partial frequency redistribution. In the case of a small optical thickness of a medium (0) 1, the Doppler frequency redistribution in the laboratory reference system yields higher intensity values in the emission line profile core in comparison with the model of complete frequency redistribution. For an optically dense medium, thermal motion of atoms leads to an increase of reabsorption in the emission line core, and intensity increases in the line wings as compared to the complete redistribution model. The dependence of the Holstein trapping factor on optical thickness is closer to the analytic dependence than the complete redistribution model. This is explained by the fact that the frequencies of emitted photons in the laboratory reference system fall into the spectral profile core, which increases the effects of resonance radiation trapping in a dense medium.
机译:通过波长= 589.6nm的激光辐射通过激光辐射通过激光辐射在波长辐射= 589.6nm的光辐射下传递线辐射的问题。在使用部分频率再分布的模型的形成中,考虑了在原子参考系统中形成了原子参考系统中的光子发射相干的多普勒频率偏移的影响。在介质(0)1的小光学厚度的情况下,实验室参考系统中的多普勒频率再分布在排放线轮廓核中产生更高的强度值,与完全频率再分布的模型相比。对于光学致密的介质,原子的热运动导致排放线芯中的重吸收的增加,与完全再分配模型相比,线翼的强度增加。 Holstein捕获因子对光学厚度的依赖性更接近分析依赖性,而不是完全再分布模型。这本来解释了实验室参考系统中发射光子的频率落入光谱轮廓芯中,这增加了谐振辐射捕获在致密介质中的效果。

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  • 来源
    《Optics and Spectroscopy》 |2018年第5期|共8页
  • 作者单位

    Siberian Fed Univ Inst Nonferrous Met &

    Mat Sci Krasnoyarsk 660025 Russia;

    Siberian Fed Univ Inst Nonferrous Met &

    Mat Sci Krasnoyarsk 660025 Russia;

    Siberian Fed Univ Inst Nonferrous Met &

    Mat Sci Krasnoyarsk 660025 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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