Evaluation of the spatial structure of multiline emission in a capacitively coupled plasma using tomographic reconstruction

Manabu Kyuzo, Kenta Harada, Ryota Izumi, H. Suzuki, H. Toyoda
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Abstract

By imaging a capacitively coupled plasma from multiple directions using telecentric lens cameras and optical bandpass filters, the spatial structure of emission at specific wavelengths was reconstructed using the Tikhonov–Phillips regularization method. Camera parameters, crucial for relating three-dimensional structures to two-dimensional images, were evaluated experimentally to avoid a complex analytical approach. Assuming an axisymmetric emission profile, 750.4 nm Ar and 585.2 nm Ne emissions from Ar/Ne mixture plasma were reconstructed. The pressure dependence of the reconstructed Ar profile showed a similar trend to that of the two-dimensional emission images. The spatial structure of the emission intensity ratio of Ne to Ar from the reconstructed Ar and Ne profiles agreed well with a spatial distribution of electron temperatures measured with a Langmuir probe.
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利用断层重构评估电容耦合等离子体中多线发射的空间结构
通过使用远心镜头照相机和光学带通滤波器从多个方向对电容耦合等离子体进行成像,利用提霍诺夫-菲利普斯正则化方法重建了特定波长发射的空间结构。相机参数是将三维结构与二维图像联系起来的关键,为了避免复杂的分析方法,我们通过实验对相机参数进行了评估。假设发射轮廓为轴对称,重建了 Ar/Ne 混合等离子体的 750.4 nm Ar 和 585.2 nm Ne 发射。重建氩曲线的压力依赖性与二维发射图像的趋势相似。从重建的 Ar 和 Ne 曲线得出的 Ne 与 Ar 发射强度比的空间结构与用朗缪尔探针测得的电子温度的空间分布非常吻合。
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