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Spectroscopic investigation of molecular formation in laterally colliding laser-produced carbon plasmas

机译:横向碰撞激光产生的碳等离子体分子形成的光谱研究

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We report detailed spectroscopic investigation of carbon dimer production in the stagnation layer formed due to laterally colliding plasma plumes under vacuum and N-2 ambience. Two spatially separated Nd:YAG laser pulses are used to generate plasma plumes in close proximity to a solid graphite target. A comparative optical emission spectroscopic study of a stagnation layer and a single carbon plasma plume is carried out in order to find the optimum experimental conditions for carbon dimer (C-2) production. Significant enhancement in the C-2 production is observed in the stagnation layer as compared to that observed in the single plume. Further, a substantial increase in carbon dimer formation is monitored by introducing N-2 gas. Along with carbon dimer, carbon nitride (CN) emission is also observed in the emission spectra. Spatiotemporal evolution of C-2 and CN emission reveals that the yield of carbon dimer production is at a maximum dose to the target surface, and decreases with an increase in time as well as spatial position. On the contrary, CN emission increases with the target distance. The dominant pathways for CN formation are suggested, and it is demonstrated that C-2 acts as a precursor to CN formation. The above observation is correlated with cooling of ejected carbon species in the collisional regime and the estimated vibrational temperature of C-2. (C) 2019 Optical Society of America
机译:我们报告了由于真空和N-2氛围的横向碰撞等离子体含量而形成的停滞层中的碳二聚体产生的详细光谱研究。两个空间分离的Nd:YAG激光脉冲用于产生紧邻固体石墨靶的等离子体羽毛。进行了停滞层和单碳等离子体羽流的对比光发射光谱研究,以找到碳二聚体(C-2)生产的最佳实验条件。与单一羽流中观察到的相比,在停滞层中观察到C-2产生的显着增强。此外,通过引入N-2气体监测碳二聚体形成的显着增加。与碳二聚体一起,在发射光谱中也观察到氮化物(CN)发射。 C-2和CN发射的时尚演进揭示了碳二聚体产生的产率在目标表面的最大剂量上,并且随着时间的推移和空间位置而减小。相反,CN发射随目标距离增加。提出了CN形成的显性途径,证明C-2作为CN形成的前体。上述观察与碰撞状态下的喷射碳物种的冷却和C-2的估计振动温度相关。 (c)2019年光学学会

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