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首页> 外文期刊>The Journal of Chemical Physics >CN spectroscopy and physico-chemistry in the boundary layer of a C/SiC tile in a low pressure nitrogen/carbon dioxide plasma flow
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CN spectroscopy and physico-chemistry in the boundary layer of a C/SiC tile in a low pressure nitrogen/carbon dioxide plasma flow

机译:低压氮气/二氧化碳等离子流中C / SiC瓷砖边界层的CN光谱学和理化

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The boundary layer of a C/SiC tile in a low pressure nitrogen/carbon dioxide plasma flow is investigated by numerous measurement techniques. CN emission is especially studied through its red and violet systems. Radial and axial profiles of CN relative density are obtained and absolute values are estimated by calibration, thanks to a tungsten lamp. Rotational and vibrational temperatures are determined and compared with wall, heavy particle, and electron temperatures. High vibronic bands should be taken into account in order to determine accurate vibrational temperatures. Delta upsilon = 0 sequence of the violet system is examined in detail and differences between calculations made using existing sets of spectroscopic constants and experimental spectra are pointed out. Inadequacy of very accurate Fourier transform spectroscopy (FTS) sets of constants in high temperature calculations is underlined. CN and NO density increases in the boundary layer are explained through a dissociative adsorption of N-2(upsilon) or N-2(A (3)Sigma(+)). Such a process implies a significant action of nitrogen in surface erosion. Excitation of CN and NO by electrons is rejected and an excitation transfer with vibrationally excited and metastable states of N-2 and CO is proposed. (C) 2000 American Institute of Physics. [S0021-9606(00)70823-3]. [References: 26]
机译:通过多种测量技术研究了低压氮气/二氧化碳等离子流中C / SiC瓷砖的边界层。尤其是通过红色和紫色系统研究了CN的发射。得益于钨丝灯,可以得到CN相对密度的径向和轴向轮廓,并通过校准估算出绝对值。确定旋转和振动温度,并将其与壁温,重颗粒和电子温度进行比较。为了确定准确的振动温度,应考虑高振动带。详细检查了紫罗兰色系的Delta upsilon = 0序列,并指出了使用现有光谱常数集和实验光谱进行的计算之间的差异。在高温计算中,非常精确的傅立叶变换光谱(FTS)常数集不足。边界层中CN和NO密度的增加是通过N-2(upsilon)或N-2(A(3)Sigma(+))的解离吸附来解释的。这样的过程暗示了氮在表面侵蚀中的重要作用。拒绝了电子对CN和NO的激发,并提出了具有N-2和CO的振动激发态和亚稳态的激发转移。 (C)2000美国物理研究所。 [S0021-9606(00)70823-3]。 [参考:26]

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