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Space charge cartography by FLIMM: a three-dimensional approach

机译:FLIMM的空间电荷制图:一种三维方法

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A technique for three-dimensional cartography of space charges profiles inside polymer insulating samples is proposed. Called focused laser intensity modulation method (FLIMM), it is derived from the well-known LIMM method, with an additional possibility of being able to focus the laser spot on the surface of the sample to be studied. The processed data is a short-circuited pyrolectric current collected between the electrodes and induced by the interaction of the charges with the periodic variations of temperature produced by the laser source. The focused aspect of our method requires a good three-dimensional modelling of the spatial evolution of this thermal gradient. Under these conditions, the treatment of the equation of heat propagation is carried out using simultaneously a double Fourier transform and Green functions. In association with the numerical simulations of this solution, a two-dimensional scanning of the beam on polyethylene test sample surfaces shows that one can get three-dimensional representations of space charge shapes with a lateral resolution lower than 10 mum and for a depth of analysis typically included in the range 1-100 mum. [References: 31]
机译:提出了一种对聚合物绝缘样品内部空间电荷分布进行三维制图的技术。它被称为聚焦激光强度调制方法(FLIMM),它是从众所周知的LIMM方法派生而来的,它还具有将激光光斑聚焦在待研究样品表面上的其他可能性。处理后的数据是在电极之间收集的短路的吡咯电流,其由电荷与激光源产生的温度的周期性变化的相互作用引起。我们方法的重点是要求对该热梯度的空间演化进行良好的三维建模。在这些条件下,同时使用双重傅里叶变换和格林函数对热传导方程进行处理。结合该解决方案的数值模拟,在聚乙烯测试样品表面上对光束进行二维扫描,结果表明,可以得到空间电荷形状的三维表示,其横向分辨率低于10微米,并且适用于分析深度通常包括在1-100毫米范围内。 [参考:31]

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