A pointwise separation algorithm to separate plasma density and thickness in two-beam interferometry

Malong Fu, Haitao Wang, Z. Hou
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Abstract

The conventional two-beam interferometry adopts only one expression about plasma density and thickness because only fringe shift is recognized from the recorded fringes. Therefore, the prior hypotheses that the plasma is thickness-uniform or circular symmetry have to be introduced to separate them, which limits the applied range and accuracy of the conventional method. This paper found that the laser beam will be deflected if the thickness changes, leading the recorded fringes to be defocused. As a result, a new expression relying on recognizing the defocus parameter of the recorded fringes is derived, and a pointwise separation algorithm to separate density and thickness is proposed based on the two expressions. Compared to the conventional algorithms, the new algorithm requires no hypotheses and thus has a wider applied range.
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在双光束干涉测量中分离等离子体密度和厚度的点式分离算法
传统的双光束干涉测量法只采用等离子体密度和厚度的一种表达方式,因为只能从记录的条纹中识别条纹偏移。因此,必须引入等离子体厚度不均匀或圆形对称的先验假设才能将它们分开,这限制了传统方法的应用范围和精度。本文发现,如果厚度发生变化,激光束就会发生偏转,从而导致记录的条纹失焦。因此,本文推导出了一个新的表达式,该表达式依赖于识别记录的条纹的散焦参数,并根据这两个表达式提出了一种分离密度和厚度的点式分离算法。与传统算法相比,新算法无需假设,因此适用范围更广。
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