Two-dimensional Observation of Emission Spectra Excited from Laser Induced Plasmas and the Application to Emission Spectrometric Analysis

Chizuru KITAOKA and Kazuaki WAGATSUMA

Analytical Sciences, 23 (2007) 1261-1266

Abstract
The spatial distribution analysis of emission signals from a laser-induced plasma can provide information on the excitation mechanism as well as on the optimization of the analytical conditions when it is employed as a sampling and excitation source in optical emission spectrometry. A two-dimensionally imaging spectrometer system was employed to measure spatial variations in the emission intensities of a copper sample and plasma gases when krypton, argon, or helium was employed under various pressure conditions. The emission image of the Cu I 324.75-nm line consists of a breakdown spot and a plasma plume, where the breakdown zone expands toward the surrounding gas. The shape and the intensities of the plasma plume are strongly dependent on the kind and pressure of the plasma gas, while those of the breakdown zone are less influenced by these experimental parameters. This effect can be explained by the difference in the cross-section of collisions between krypton, argon, and helium. The signal-to-background ratio of the Cu I 324.75-nm line was estimated over two-dimensional images to determine the optimum position for analytical applications.

KeyWords: laser-induced plasma; optical emission spectrometry; spatially-resolved measurement; copper; krypton; argon; helium

レーザ誘起プラズマを励起源とする発光スペクトルの2次元像の観察とその発光分析への応用

北岡 千鶴、我妻 和明

Analytical Sciences, 23 (2007) 1261-1266

要旨
レーザ誘起プラズマから発せられる発光信号の空間分布はその励起機構や分析応用における励起条件の最適化に有用な情報をもたらす。本研究ではプラズマガスとしてアルゴン、クリプトンおよびヘリウムを用い、さらにその導入圧力を様々に変えた場合に得られる銅発光線のプラズマ2次元像をイメージ分光器システムを用いて解析した。CuI 324.75nmの発光線の分光像はプラズマ生成直後のブレイクダウン部位とプラズマが雰囲気ガス方向に膨張していく領域からなり、ブレイクダウン部位の形や強度はプラズマガスの種類や圧力に殆ど依存いないのに対して、膨張部位は大きく変化することが明らかになった。この効果はプラズマガスの衝突断面積の差異により説明することができる。分析特性を調べるために、銅発光線の信号対雑音比の空間分布を測定し、最適分析部位を決定した。

キーワード: laser-induced plasma; optical emission spectrometry; spatially-resolved measurement; copper; krypton; argon; helium

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