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Ghost fringe removal techniques using Lissajous data presentation

机译:使用Lissajous数据表示的Ghost条纹移除技术

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摘要

A VISAR (Velocity Interferometer System for Any Reflector) is a Dopplervelocity interferometer which is an important optical diagnostic in shockwave experiments at the national laboratories, used to measureequation of state(EOS) of materials under extreme conditions. Unwanted reflection of laser light from target windows can produce an additional component to the VISAR fringe record that can distort and obscure the true velocity signal. Accurately removing this so-called ghost artifact component is essential for achieving high accuracy EOSmeasurements, especially when the true light signal is only weakly reflected from the shock front. Independent of the choice of algorithm for processing the raw data into a complex fringe signal, we have found it beneficial to plot this signal as a Lissajous and seek the proper center of this path, even under time varying intensity which can shift the perceived center. The ghost contribution is then solved by a simple translation in the complex plane that recenters the Lissajous path. For continuous velocity histories, we find that plotting the fringe magnitude vs nonfringing intensity and optimizing linearity is an invaluable tool for determining accurate ghost offsets. For discontinuous velocity histories, we have developed graphically inspired methods which relate the results of two VISARs having different velocity per fringe proportionalities or assumptions of constant fringe magnitude to find the ghost offset. The technique can also remove window reflection artifacts in generic interferometers, such as in the metrology of surfaces.
机译:VISAR(任何反射器的速度干涉仪系统)是一种多普勒速度干涉仪,是国家实验室在冲击波实验中的重要光学诊断,用于在极端条件下测量材料的状态方程(EOS)。来自目标窗口的不必要的激光反射会在VISAR条纹记录中产生额外的分量,从而使真实的速度信号失真或模糊不清。准确去除这种所谓的鬼影伪影分量对于实现高精度EOS测量至关重要,尤其是当真实的光信号仅从震动前沿微弱反射时。与选择将原始数据处理为复杂条纹信号的算法无关,我们发现将信号绘制为李沙育(Lissajous)并寻找该路径的正确中心是有益的,即使在时变强度下也可能会移动感知到的中心。然后,通过在复杂平面中对Lissajous路径进行更新的简单平移来解决幻影贡献。对于连续的速度历史记录,我们发现绘制条纹幅度与非条纹强度并优化线性度是确定精确重影偏移的宝贵工具。对于不连续的速度历史,我们开发了图形启发方法,该方法将两个VISAR的结果与每个条纹比例成比例,或者假设条纹大小恒定,将两个VISAR的结果联系起来,以找到幻影偏移。该技术还可以消除通用干涉仪中的窗口反射伪像,例如表面计量学中的。

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