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Diagnostics of Laser Produced Plume Under Carbon Nanotube Growth Conditions

机译:碳纳米管生长条件下激光产生羽流的诊断

摘要

This paper presents diagnostic data obtained from the plume of a graphite composite target during carbon nanotube production by the double-pulse laser oven method. The insitu emission spectrum (300 to 650 nm) is recorded at different locations upstream of the target and at different delay times from the lasers (IR and green). Spectral features are identified as emissions from C2 (Swan System: a (sup 3)pi(sub g) - delta (sup 3)pi(sub u) and C3 (Comet Head System: A (sup 1)pi(sub u) - chi (sup 1)sigma(sub u) (sup +). Experimental spectra are compared with computed spectra to estimate vibrational temperatures of excited state C2 in the range of 2500 to 4000 kappa The temporal evolution of the 510 nm band of C2 is monitored for two target positions in various locations which shows confinement of the plume in the inner tube and increase in plume velocity with temperature. The excitation spectra of C2 are obtained by using a dye laser to pump the (0,1) transition of the Swan System and collecting the Laser Induced Fluorescence signal from C2 These are used to obtain "ground-state" rotational and vibrational temperatures which are close to the oven temperature. Images of the plume are also collected and are compared with the spectral measurements.
机译:本文介绍了通过双脉冲激光烤箱法从碳纳米管生产过程中从石墨复合靶的羽流获得的诊断数据。原位发射光谱(300至650 nm)记录在靶标上游的不同位置,以及激光(IR和绿色)的不同延迟时间。光谱特征被识别为来自C2(天鹅系统:a(sup 3)pi(sub g)-增量(sup 3)pi(sub u)和C3(彗星系统:A(sup 1)pi(sub u))的发射-chi(sup 1)sigma(sub u)(sup +)。将实验光谱与计算光谱进行比较,以估算激发态C2在2500至4000 kappa范围内的振动温度。C2的510 nm波段的时间演化为监测在不同位置的两个目标位置,这些位置显示了内管中羽流的局限性,并且羽流速度随温度的升高而增加,C2的激发光谱是通过使用染料激光泵浦天鹅的(0,1)跃迁获得的系统和收集来自C2的激光诱导荧光信号这些信号用于获得接近烤箱温度的“基态”旋转和振动温度,还收集了烟羽的图像,并将其与光谱测量结果进行比较。

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