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Experimental investigation of thermal effects in laser-nanofluid interaction by moire technique

机译:MOIRE技术激光纳米流体相互作用热效应的实验研究

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摘要

Interaction of a CW laser with a nonlinear medium leads to some thermal phenomena. Thermal lensing, which changes the distribution of the refractive index of the medium in the interacting area, is the most important phenomenon among them. Moire deflectometry is a known technique for measuring the profile of refractive index. In this work, by using nonscanning moire deflectometry, the refractive index profile in the interaction region of a graphene oxide nanofluid sample and a green CW laser is measured. Using the thermal diffusion equation, the thermo-optical coefficient is calculated. The obtained thermo-optical coefficient value is in good agreement with value from other methods. Having the thermo-optical coefficient and three-dimensional profile of the refractive index, the three-dimensional distribution of temperature is obtained. Although this method is inexpensive and simple, it is applicable for liquid, solid, and gas samples. (C) 2017 Optical Society of America
机译:CW激光与非线性介质的相互作用导致一些热现象。 热透镜改变介质在互动区域中折射率的分布,是它们中最重要的现象。 Moire偏转测量是用于测量折射率轮廓的已知技术。 在这项工作中,通过使用非碳灭菌偏转测定法,测量石墨烯纳米流体样品的相互作用区域中的折射率曲线和绿色CW激光器。 使用热扩散方程,计算热光学系数。 获得的热光度系数值与其他方法的价值吻合良好。 具有折射率的热光学系数和三维轮廓,获得的三维分布温度分布。 虽然这种方法廉价且简单,但适用于液体,固体和气体样品。 (c)2017年光学学会

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