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NH and CN radical emission from corona post discharge region in high density nitrogen plasma

机译:在高密度氮等离子体中来自电晕后排出区的NH和CN自由基发射

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The corona post discharge region in high-density nitrogen plasma has been investigated.We observed the emission band(0-0)of NH located at 336 nm corresponding to the transition A3Π-X~3Σ which is particularly intense at low pressure.The possibility would be that NH is formed from a radiative recombination between a hydrogenated compound present in trace amounts(as CmHn)and nitrogen.Outside the(0-0)NH band,only the band(1-1)at 337.00 nm(i.e.1 nm from the previous one)was detected.Since its transmission probability is lower than that of the band(0-0)and is located very close to the intense 2S~+ band(0-0)(337.13 nm),detection is not possible.A very weak emission of the CN violet system((B~2Σ+-X~2Σ)has been identified in the discharge zone with excitation threshold in the order of 3.37 eV.The most intense bands are between 385 nm and 388.34 nm.This radical can only come from a reaction in the discharge between the nitrogen and an organic compound of the CnHm type.Although the purification system is very sophisticated,traces of hydrocarbons can be introduced either by contamination by oil vapours from the pumping system or by their presence in the starting gas(0.01 ppm).The radical CN is observed only with a discharge in negative polarity.
机译:已经研究了高密度氮等离子体中的电晕后排出区域。我们观察到位于336nm的NH的发射带(0-0),其对应于低压的过渡A3π-X〜3σ特别强烈。可能性将是NH由在痕量量(作为CMHN)和氮气中存在的氢化化合物之间的辐射重组形成.outside(0-0)NH波段,只有337.00nm的带(1-1)(IE1 nm从前一个)被检测到。它的传输概率低于带(0-0)的传输概率,并且位于非常靠近强烈的2S〜+带(0-0)(337.13nm),检测是不可能的。在排出区中已经识别了CN紫色系统((B〜2σ+ -X〜2σ)的发射非常弱,大约为3.37eV的激励阈值。最强烈的带介于385nm和388.34nm之间。这种基团只能来自在氮气和CNHM类型的有机化合物之间的反应中的反应。虽然纯化S Ystem非常复杂,碳氢化合物的痕迹可以通过从泵送系统的污染或通过它们在起始气体(0.01ppm)中的存在而引入。仅在负极的放电时观察到自由基CN。

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