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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Optical Emission Studies of Copper Plasma Induced Using Infrared Transversely Excited Atmospheric (IR TEA) Carbon Dioxide Laser Pulses
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Optical Emission Studies of Copper Plasma Induced Using Infrared Transversely Excited Atmospheric (IR TEA) Carbon Dioxide Laser Pulses

机译:红外横向激发大气(IR TEA)二氧化碳激光脉冲诱导的铜等离子体的光发射研究

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Spatially resolved, time-integrated optical emission spectroscopy was applied for investigation of copper plasma produced by a nanosecond infrared (IR) transversely excited atmospheric (TEA) CO2 laser, operating at 10.6 gm. The effect of surrounding air pressure, in the pressure range 0.1 to 1013 mbar, on plasma formation and its characteristics was investigated. A linear dependence of intensity threshold for plasma formation on logarithm of air pressure was found. Lowering of the air pressure reduces the extent of gas breakdown, enabling better laser-target coupling and thus increases ablation. Optimum air pressure for target plasma formation was 0.1 mbar. Under that pressure, the induced plasma consisted of two clearly distinguished and spatially separated regions. The maximum intensity of emission, with sharp and well-resolved spectral lines and negligibly low background emission, was obtained from a plasma zone 8 mm from the target surface. The estimated excitation temperature in this zone was around 7000 K. The favorable signal to background ratio obtained in this plasma region indicates possible analytical application of TEA CO2 laser produced copper plasma. Detection limits of trace elements present in the Cu sample were on the order of 10 ppm (parts per million). Time-resolved measurements of spatially selected plasma zones were used to find a correlation between the observed spatial position and time delay.
机译:应用空间分辨的时间积分光发射光谱法研究由纳秒红外(IR)横向激发大气(TEA)CO2激光器(工作于10.6克)产生的铜等离子体。研究了在0.1到1013 mbar的压力范围内周围气压对等离子体形成及其特性的影响。发现等离子体形成强度阈值与气压对数呈线性关系。降低气压可减少气体击穿的程度,从而实现更好的激光-目标耦合,从而增加烧蚀。目标等离子体形成的最佳气压为0.1 mbar。在该压力下,诱发的等离子体由两个明显区分且空间上分开的区域组成。从距目标表面8 mm的等离子区获得了最大发射强度,并具有清晰清晰的光谱线和可忽略的低背景发射。在该区域中估计的激发温度约为7000K。在该等离子体区域中获得的良好的信噪比比表明TEA CO2激光产生的铜等离子体可能在分析中的应用。铜样品中痕量元素的检出限为10 ppm(百万分之一)。在空间上选择的等离子体区域的时间分辨测量值用于发现观察到的空间位置和时间延迟之间的相关性。

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