Ограничение мощности лазерного излучения углеродными материалами с нелинейным оптическим пороговым эффектом при форме импульса с плоской вершиной

М. С. Савельев, Павел Николаевич Василевский, Ю. П. Шаман, А.Ю. Толбин, А. Ю. Герасименко, С.В. Селищев
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Abstract

The possibilities of using multivariate determination of carbon nanotubes properties based on the dependence data of the normalized transmission logarithm on the sample displacement in the case of Z-scan with an open aperture as well as on the total pulse energy in the case of fixed sample position measurements are studied. The radiation transfer equation for the threshold dependence of the absorption coefficient on the intensity of a flat-top laser beam is used. The data of physical and computational experiments showed the sensitivity of the measured curves with respect to the values of the constants of the optical and threshold energy fluence, as well as the beam waist radius. The possibility of multivariate determination of the properties of liquid carbon nanotube-based dispersed media with a nonlinear optical threshold effect and beam waist radius inside such samples has been established.
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用非线性光学阈值脉冲水平限制激光辐射功率
研究了在开孔z扫描条件下,基于归一化透射对数对样品位移的依赖数据,以及在固定样品位置测量条件下,基于脉冲总能量的依赖数据,对碳纳米管性能进行多元测定的可能性。利用平顶激光束光强对吸收系数阈值依赖性的辐射传递方程。物理实验和计算实验数据表明,测量曲线对光学常数和阈值能量影响以及光束腰半径的敏感性。建立了利用非线性光学阈值效应和样品内束腰半径对液态碳纳米管分散介质性质进行多元测定的可能性。
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