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Effect of an integrating sphere measurement on the distortion of a laser pulse propagating through a turbid medium

机译:积分球测量对通过混浊介质传播的激光脉冲畸变的影响

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A focused nanosecond laser pulse produces optical damage to subsurface targets when its intensity is high enough to overcome the required threshold irradiance. However, when the material is highly scattering, the laser pulse irradiance decreases as it propagates through the sample because the temporal pulse profile is stretched due to multiple scattering events. The objective of this work is to determine the transfer function associated to an integrating sphere measurement involving turbid media samples. Integrating spheres are used to measure the total diffuse reflectance and transmittance of homogeneous turbid media samples to retrieve its absorption and scattering coefficients. Reflectance and transmittance measurements, being static properties, are not affected by multiple reflections of light inside the integrating spheres. However, for a time-dependent measurement, such as the temporal profile of a short laser pulse propagating through a turbid medium, the light reflection and multiple scattering events inside the sphere contributes to an additional stretching deformation of the measured temporal pulse profile, which complicates the interpretation of the measurements. In this work we use integrating spheres to analyze the effect of a turbid media on the propagation of a nanosecond laser pulse. temporal laser pulse profile, optical properties, scattering, integrating sphere, Monte Carlo simulation.
机译:当聚焦的纳秒激光脉冲强度足以克服所需的阈值辐照度时,会对地下目标产生光学损伤。但是,当材料高度散射时,激光脉冲辐照度会随着其传播通过样品而降低,因为时间脉冲轮廓由于多次散射事件而被拉伸。这项工作的目的是确定与涉及混浊介质样品的积分球测量相关的传递函数。积分球用于测量均匀混浊介质样品的总漫反射率和透射率,以获取其吸收系数和散射系数。反射率和透射率测量是静态属性,不受积分球内部多次反射的影响。但是,对于随时间变化的测量,例如传播通过混浊介质的短激光脉冲的时间分布,球体内的光反射和多次散射事件会导致所测量的时间脉冲分布发生额外的拉伸变形,这使情况变得复杂测量的解释。在这项工作中,我们使用积分球来分析混浊介质对纳秒激光脉冲传播的影响。时间激光脉冲轮廓,光学特性,散射,积分球,蒙特卡洛模拟。

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