Self-diffraction in optically dense media

M. Belov, M. A. Selifanov, E. Manykin
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Abstract

We investigate the phenomenon of self-diffraction in optically dense media for those cases where it is necessary to take into account the inverse effect of the medium on the field. Our study is based on a numerical analysis of the Maxwell–Bloch equations. This analysis reveals that, as the concentration of two-level systems increases, an anomalous response of four-wave mixing arises. This response is associated with the appearance of a self-diffraction signal in the negative-delay region and also with a faster decay of coherence in the system.
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光密集介质中的自衍射
我们研究了光密集介质中的自衍射现象,在这些情况下,需要考虑介质对场的反向效应。我们的研究是基于对麦克斯韦-布洛赫方程的数值分析。这一分析表明,随着两能级系统浓度的增加,出现了四波混频的异常响应。这种响应与负延迟区出现自衍射信号有关,也与系统中相干性衰减更快有关。
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Large-Aperture CO2 Amplifier Fast objective for focusing laser light Increasing the mode-locking efficiency of a cw solid-state laser with an auxiliary cavity Regarding the paper "Stability of the eigenvalue solutions in a nonlinear directional coupler" by V. P. Torchigin et al. [Sov. J. Quantum Electron. 21, 1144–1147 (1991)] Correlation diagnostics of random spatially nonuniform optical fields
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