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Thermal blooming effect and the scaling laws of partial spatially coherent beam array propagating through the atmosphere

机译:热盛开效应和通过大气传播的部分空间相干梁阵列的缩放规律

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The thermal blooming effect and the scaling laws of partially coherent beam (PCB) array propagating in the atmosphere are studied. The four-dimensional (4D) computer code of time-dependent propagation to simulate PCB array through the turbulent atmosphere is designed. Based on numerical simulation, the propagation properties of PCB array are investigated in detail. It is shown that, as the spatial coherence parameterβdecreases, the relative beam width increases and the thermal blooming effect becomes more severe. However, the change of the energy Strehl ratio (SRE) versus spatial coherence parameterβis not monotonic because the energy is concentrated on the main lobe for fully coherent beam array. Besides, the scaling laws to estimate the thermal blooming effects of PCB array are investigated. The modified expression of the distortion parameterNdof a focused PCB array is derived, which is efficient to evaluate the strength of the thermal blooming effects.
机译:研究了在大气中传播的部分相干光束(PCB)阵列的热坯效果和缩放规律。 设计了时间依赖传播的四维(4D)计算机代码,以模拟PCB阵列通过湍流气氛。 基于数值模拟,详细研究了PCB阵列的传播特性。 结果表明,作为空间相干参数βdecr,相对光束宽度增加并且热坯效果变得更严重。 然而,能量刻度比(SRE)与空间相干参数β的变化不是单调,因为能量集中在主叶上以进行完全相干梁阵列。 此外,研究了估计PCB阵列热盛开效果的缩放法律。 推导出聚焦PCB阵列的失真参数的修改表达式,这是评估热涂布效果的强度有效的。

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