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Spatially resolved optical emission spectroscopy of a nanosecond pulsed microplasma jet

机译:纳秒级脉冲微等离子体射流的空间分辨光发射光谱

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Recent interests in non-equilibrium microplasma jets for biomedical applications have motivated fundamental studies of these plasmas. This work presents a spectroscopic study of a 500 micrometer-in-width helium microplasma jet that was generated in ambient air with a single needle electrode powered by 4 kV, 5 ns pulses at 500 Hz. Each HV pulse supplied 0.4 mJ of energy per pulse. These pulse characteristics provided a unique set of plasma conditions for spectroscopic evaluation, as the physical and chemical processes that take place within the plasma channel are highly dependent on the HV pulse characteristics. Optical emission profiles were collected at wavelengths that ranged from 200 nm up to 800 nm with a spectral resolution of approximately 0.02 nm. The experimental results identified and yielded information on the optical emission profiles of He*, O*, OH*, N* and N* as a function of axial position along the jet channel. Evaluation of the optical emission spectrum provided information on the relative emission intensities for each excited species along with rotational, vibrational, and electronic temperatures. These results provide fundamental information needed to understand the complex chemical and physical phenomena occurring in plasma jets.
机译:对于生物医学应用的非平衡微等离子体射流的近期兴趣激发了对这些等离子体的基础研究。这项工作是对一个500微米宽的氦微等离子体射流的光谱学研究,该射流是在一个空气中生成的,该单个射流电极由500赫兹下的4 kV,5 ns脉冲供电。每个HV脉冲每个脉冲提供0.4 mJ的能量。这些脉冲特性为光谱评估提供了一组独特的等离子体条件,因为在等离子体通道内发生的物理和化学过程高度依赖于HV脉冲特性。在200 nm至800 nm范围内的波长下收集光发射曲线,光谱分辨率约为0.02 nm。实验结果确定并获得了有关He *,O *,OH *,N *和N *的光发射轮廓随沿射流通道轴向位置变化的信息。光学发射光谱的评估提供了有关每个激发物质的相对发射强度以及旋转,振动和电子温度的信息。这些结果提供了了解等离子流中发生的复杂化学和物理现象所需的基本信息。

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