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Modified Branching Ratio Method for Absolute Intensity Calibration in VUV Spectroscopy

机译:VUV光谱绝对强度校正的改进分支比法

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摘要

A new modified branching ratio (MBR) method for the absolute intensity calibration of a vacuum ultraviolet (VUV) spectrometer is presented. The spectrometer is equipped with a multichannel detector, consisting of an open microchannel plate coupled to a charge-coupled device (CCD), or with a single channel photomultiplier. This technique extends the number of calibration points available from those provided by the branching ratio (BR) calibration technique. The MBR method is a variation of the conventional BR method, where we relax the condition that the two spectral emissions, in the visible and VUV spectra, come from the same excited level, to include transitions from different sublevels of the same energy level. However, a critical study of the statistical equilibrium of sublevels from the same ion energy level was necessary. As a result, we have more 'than doubled the number of calibration points for our spectrometer used in tokamak plasma diagnostics. The appropriate identification of new spectral line pairs for absolute calibration here presented opens the path for future works in other devices with similar plasma conditions or impurities content.
机译:提出了一种新的改进的支化比(MBR)方法,用于真空紫外(VUV)光谱仪的绝对强度校准。光谱仪配备有多通道检测器,该检测器由耦合到电荷耦合器件(CCD)的开放式微通道板或单通道光电倍增管组成。该技术扩展了分支比(BR)校准技术提供的校准点的数量。 MBR方法是传统BR方法的一种变体,在该方法中,我们放宽了这样的条件,即可见光谱和VUV光谱中的两个光谱发射都来自相同的激发能级,包括来自相同能级的不同子能级的跃迁。但是,必须对同一离子能级下的子级的统计平衡进行严格的研究。结果,我们将用于托卡马克等离子体诊断的光谱仪的校准点数量增加了一倍以上。此处介绍的用于绝对校准的新光谱线对的正确识别为将来在其他具有类似等离子体条件或杂质含量的设备中的工作开辟了道路。

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