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Optical Characteristics of Barrier Discharge Plasma Based on Mixtures of Mercury Diiodide and Dibromide Vapors with Gases

机译:基于二碘化汞和二溴化物蒸气与气体混合的阻挡放电等离子体的光学特性

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摘要

We analyze the spectral, integrated, and durability characteristics of radiation from atmospheric-pressure gas-discharge plasma based on multicomponent mixtures (mercury diiodide and dibromide with helium and small admixtures of molecular nitrogen and xenon). We produced the gas-discharge plasma and excited the components of the working mixture by a pulsed (pulse repetition rates 500, 2000, and 4000 Hz; pulse duration ~150 ns) barrier discharge. Visible radiation was detected from excimer molecules of mercury monoiodide and monobromide, nitrogen and helium molecules, and helium and mercury atoms. Patterns were found in the variations of optical plasma characteristics with pumping pulse repetition rate and with component and quantitative mixture composition.
机译:我们分析了基于多组分混合物(二碘化汞和氦的二溴化氢以及分子氮和氙的小混合物)的大气压气体放电等离子体的辐射的光谱,积分和耐久性能。我们产生了气体放电等离子体,并通过脉冲(脉冲重复频率500、2000和4000 Hz;脉冲持续时间〜150 ns)的势垒放电激发了工作混合物的成分。从单碘化汞和一溴化汞的准分子,氮和氦分子以及氦和汞原子中检测到可见辐射。在随泵浦脉冲重复频率以及组分和定量混合物组成变化的光学等离子体特性中发现了模式。

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