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Studies of photoelastic tomography process for 3D birefringence determination in phase microobjects

机译:相阶段微型术中3D双折射测定的光弹性层析过程研究

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In the paper we present the method for 3D measurement of birefringence in photonics components by means of automated photoelasticity combined with tomography. The enhanced measurement procedure is described and the experimental results obtained for an exotic phase object, namely glass capillary infilled with liquid crystals are presented. The sources of errors are discussed for the cases of different object models and the numerical experiments aiming in determination of limitations of the experimental procedures are performed. Finally the possibility of reduction of these errors by an introduction of additional numerical focusing priori the tomographic reconstruction algorithmis shown and its applicability is proven by numerical simulations.
机译:本文通过自动光弹性与断层扫描结合地介绍了光子组件中双折射的3D测量方法。提高了增强的测量程序,并呈现了对外来相物体的实验结果,即用液晶脱滤的玻璃毛细管。对不同对象模型的病例讨论了误差来源,并且进行了旨在确定实验程序的限制的数值实验。最后通过使用数值模拟来证明通过引入额外的数控重构先验预先构造算法来减少这些误差的可能性是通过数值模拟证明其适用性。

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