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Using a laser source to measure the refractive index of glass beads and Debye theory analysis

机译:使用激光源测量玻璃珠的折射率和德拜理论分析

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Using a monochromatic laser beam to illuminate a homogeneous glass bead, some rainbows will appear around it. This paper concentrates on the study of the scattering intensity distribution and the method of measuring the refractive index for glass beads based on the Debye theory. It is found that the first rainbow due to the scattering superposition of backward light of the low-refractive-index glass beads can be explained approximately with the diffraction, the external reflection plus the one internal reflection, while the second rainbow of high-refractive-index glass beads is due to the contribution from the diffraction, the external reflection, the direct transmission, and the two internal reflections. The scattering intensity distribution is affected by the refractive index, the radius of the glass bead, and the incident beam width. The effects of the refractive index and the glass bead size on the first and second minimum deviation angle position are analyzed in this paper. The results of the measurements agree very well with the specifications. (C) 2015 Optical Society of America
机译:使用单色激光束照亮均匀的玻璃珠,周围会出现一些彩虹。本文着重研究基于Debye理论的玻璃微珠的散射强度分布和折射率测量方法。已经发现,由于低折射率玻璃珠的后向光的散射叠加而产生的第一条彩虹可以用衍射,外反射加一个内反射来近似解释,而第二条高折射的彩虹可以解释为:折射率玻璃珠是由于衍射,外部反射,直接透射和两次内部反射的作用所致。散射强度分布受折射率,玻璃珠的半径和入射光束宽度的影响。本文分析了折射率和玻璃珠尺寸对第一和第二最小偏差角位置的影响。测量结果与规格非常吻合。 (C)2015年美国眼镜学会

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