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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Validity of quadratic two-source spherical wave structure functions in analysis of beam propagation through generalized atmospheric turbulence
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Validity of quadratic two-source spherical wave structure functions in analysis of beam propagation through generalized atmospheric turbulence

机译:二次二源球面波结构函数在分析广义大气湍流传播中的有效性

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摘要

Two distinct methods based on which two different quadratic-form expressions for the two-source spherical wave structure function (WSF) can be derived are reviewed. The validity of closed-form expressions for the beam-wave cross-spectral density function (CSDF) due to generalized atmospheric turbulence featuring an arbitrary spectral index ranging from 3 to 4, developed based on the quadratic two-source spherical WSFs, is examined in detail. New formulations for the conditions under which the said closed-form expressions for the beam-wave CSDF are strictly valid are developed and several novel interesting findings are elucidated. In particular, the closed-form beam-wave CSDF derived based on the small-separation asymptotic two-source spherical WSF can be considered a rigorous asymptotic solution under the strong-turbulence condition only when the separation distance between the two observation points is much smaller than the inner scale of turbulence; moreover it is also a rigorous asymptotic solution when a certain relation among the initial beam radius, initial transverse coherence width and inner scale holds, regardless of the turbulence strength and spectral index. On the other hand, the accuracy of the closed-form beam-wave CSDF derived based on the large-separation-approximation two-source spherical WSF depends on the spectral index, and a spectral index closer to 4 results in better accuracy.
机译:综述了两种不同的方法,基于这些方法,可以推导出两种不同的双源球形波结构函数(WSF)的二次形式表达式。在第二版中研究了基于二次双源球形WSFs的,具有3至4范围内任意光谱指数的广义大气湍流引起的束波交叉谱密度函数(CSDF)封闭式表达式的有效性。详情。针对束波CSDF的所述闭合形式表达式严格有效的条件,开发了新的公式,并阐明了一些新颖有趣的发现。特别是,仅当两个观测点之间的距离小得多时,才可以将基于小间距渐近两源球形WSF得出的闭合形式的波束CSDF视为强湍流条件下的严格渐近解。比内部湍流要大此外,当初始光束半径,初始横向相干宽度和内标尺之间保持一定的关系时,无论湍流强度和光谱指数如何,这也是严格的渐近解。另一方面,基于大分离近似二源球面WSF而导出的封闭形束波CSDF的精度取决于光谱指数,接近4的光谱指数具有更好的精度。

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