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Phase-conjugation properties of two-photon-pumped backward-stimulated emission. II. Theoretical studies

机译:两光子泵浦后向激发发射的相位共轭特性。二。理论研究

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Recent experimental results have shown that the highly directional frequency-upconverted backward-stimulated emission from a two-photon-pumped lasing medium possesses the property of optical phase conjugation. To explain this property, a Gabor's quasi-collinear holographic model is proposed for a two-photon-pumped gain medium. According to this model, the input IR pump beam (after passing through a phase-distorting medium or an aberration plate) can be assumed to consist of two parts: an undisturbed regular portion and a phase-distorted irregular portion. These two portions interfere with each other and create a volume holographic grating within the pumped region inside the gain medium. While an initial regular backward-stimulated emission (as a reading beam) is passing through this holographic grating, a diffracted wave is created and amplified together with the reading beam. A rigorous mathematical analysis shows that under certain conditions, the combination of these two parts (the reading beam plus the diffracted wave) of the backward-stimulated emission can be an approximate phase-conjugate field of the total input-pump field. (C) 1998 Optical Society of America. [References: 31]
机译:最近的实验结果表明,来自双光子泵浦激光介质的高度定向的频率向上转换的后向激发发射具有光学相位共轭的特性。为了解释这一特性,针对两光子泵浦增益介质,提出了Gabor准共线全息模型。根据该模型,可以假设输入的红外泵浦光束(通过相变介质或像差板之后)由两部分组成:正常部分和不规则部分。这两个部分相互干扰,并在增益介质内部的泵浦区域内创建一个体积全息光栅。当初始的规则向后激发发射(作为读取光束)穿过此全息光栅时,会产生衍射波,并与读取光束一起放大。严格的数学分析表明,在某些条件下,后向激发发射的这两个部分(读取光束加上衍射波)的组合可以成为总输入泵浦场的近似相位共轭场。 (C)1998年美国眼镜学会。 [参考:31]

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