Characteristics of a four-wave radiation converter in a multimode waveguide with resonant nonlinearity

V. V. Ivakhnik, E. Vorobeva, D. R. Kapizov
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Abstract

Quality of the wavefront reversal by a four-wave radiation converter in a parabolic waveguide with resonant nonlinearity have been analyzed using the point spread function. Medium with resonant nonlinearity have been modeled by an ensemble of particles described by a two-level energy scheme. It has been shown that over time, the half-width of the point spread function module decreases, reaching a stationary value, the magnitude of which is determined by the first pump wave intensity in the case of a long waveguide. A decrease in the pump radius at low intensity of the first pump wave leads to a decrease in the half-width of the point spread function modulus (the quality of the wavefront reversal improves), and at high intensity leads to an increase in the half-width of the point spread function modulus (the quality of the wavefront reversal deteriorates) in the stationary case with distribution on the back waveguide face depending on the transverse coordinate of the second pump wave amplitude of the according to the Gaussian law.
谐振非线性多模波导中四波辐射变换器的特性
利用点扩展函数分析了四波辐射变换器在谐振非线性抛物波导中的波前反转质量。用双能级能量格式描述粒子系综,对具有共振非线性的介质进行了建模。结果表明,随着时间的推移,点扩展函数模块的半宽度减小,达到一个平稳值,其大小由长波导情况下的第一泵浦波强度决定。在第一泵浦波强度较低时,泵浦半径的减小导致点扩散函数模量的半宽度减小(波前反转质量提高);在平稳情况下,点扩散函数模量的半宽度增大(波前反转的质量变差),分布在后波导面上,根据高斯定律依赖于第二泵浦波幅值的横向坐标。
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