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Experimental validation of a phase screen propagation model for nanosecond laser pulses travelling through turbulent atmospheres

机译:纳秒激光脉冲在湍流中传播的相位屏传播模型的实验验证

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摘要

Applications involving the outdoor use of pulsed lasers systems can be affected by atmospheric turbulence and scintillation. In particular, deterministic prediction of the risk of injury or damage due to pulsed laser radiation can be difficult due to uncertainty over the focal plane fluence of radiation that has traversed through a turbulent medium. In this study, focussed beam profiles of nanosecond laser pulses are recorded for visible laser pulses that have traversed 1400m paths through turbulent atmospheres. Beam profiles are also taken under laboratory conditions. These pulses are characterised in terms of their peak focal plane fluence, total collected energy, and Strehl ratio. Measured pulses are then compared statistically to pulse profiles generated by a two-dimensional phase screen propagation model based on the Von Karman power spectrum distribution. The model takes into account the refractive index structure constant (C~2_n ), the wavelength, the path geometry, and macroscopic beam steering. Analysis shows good correlation between the measured and simulated data, inferring that the Von Karman phase screen model can be used to predict focal plane fluence distributions for outdoor applications.
机译:涉及户外使用脉冲激光系统的应用可能会受到大气湍流和闪烁的影响。特别地,由于遍历湍流介质的辐射的焦平面通量的不确定性,很难确定由于脉冲激光辐射而造成伤害或损坏的风险的确定性预测。在这项研究中,记录了纳秒激光脉冲的聚焦光束轮廓,这些光束是通过湍流大气经过1400m路径的可见激光脉冲的。光束轮廓也在实验室条件下获取。这些脉冲的特征在于其峰值焦平面通量,总收集能量和斯特列尔比。然后将测得的脉冲与基于Von Karman功率谱分布的二维相位屏蔽传播模型生成的脉冲轮廓进行统计比较。该模型考虑了折射率结构常数(C〜2_n),波长,路径几何形状和宏观光束转向。分析表明,测量数据和模拟数据之间具有良好的相关性,这表明冯·卡曼相筛模型可用于预测室外应用的焦平面通量分布。

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