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Real-time measurement of refractive index of solution during Crystal Growth by Michaelson interferometry

机译:通过迈克尔逊干涉仪实时测量晶体生长过程中溶液的折射率

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In the real-time monitoring of variations of concentration and temperature of solution by means of contacless interferometry, real-time measurement of changes of refractive index of the solution is prerequisite and essential for post calculation processes. A novel real-time polarized light phase shifting interferometry is proposed in this paper, which was applied to Michaelson type interferometer. Although phase-shifting interferometry provides high spatial resolution, the conventional phase shifting technique by the mechanical movement has not been applied to real-time measurement during crystal growth, due to its physical limitations. We developed a method, using polarized light, and made the real-time measurement possible. The 17% undersaturation aqueous solution of KDP at 20℃ was selected as specimen to measure its refractive index during crystal growth. It is found that the present method is a few ten times more sensitive than traditional two-beam interferometry, and more accessible to applications of real-time measurements.
机译:在通过无接触干涉法实时监测溶液浓度和温度变化的过程中,实时测量溶液折射率的变化是后期计算过程的前提和必要条件。提出了一种新颖的实时偏振光相移干涉仪,并将其应用于迈克尔逊型干涉仪。尽管相移干涉术提供了很高的空间分辨率,但是由于其物理限制,通过机械运动进行的常规相移技术尚未应用于晶体生长期间的实时测量。我们开发了一种使用偏振光的方法,并使实时测量成为可能。选择在20℃下17%饱和度的KDP水溶液作为样品,以测量其在晶体生长过程中的折射率。发现本发明的方法比传统的两束干涉测量法灵敏几十倍,并且对于实时测量的应用更可访问。

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