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首页> 外文期刊>Journal of Applied Physics >Spatio-temporal distribution of absolute densities of argon metastable 1s_5 state in the diffuse area of an atmospheric pressure nanosecond pulsed argon microplasma jet propagating into ambient air
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Spatio-temporal distribution of absolute densities of argon metastable 1s_5 state in the diffuse area of an atmospheric pressure nanosecond pulsed argon microplasma jet propagating into ambient air

机译:大气纳秒脉冲氩微等离子体射流在大气中传播的扩散区域中氩亚稳1s_5态绝对密度的时空分布

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摘要

Atmospheric microplasma jets (MPJs) sustained in rare gases have gained increased attention due to their potential to generate highly reactive species. In this paper, we present space- and time-resolved argon metastable densities, Ar(1s(5)), measured in an atmospheric pressure MPJ operated in Ar and propagating into ambient air using tunable diode laser absorption spectroscopy (1s(5) -> 2p(9) optical transition). The MPJ was produced using a dielectric barrier discharge energized by short duration (230 ns) high-voltage positive pulses (4.2-6.2 kV) at a repetition frequency of 20 kHz. The spectral absorption line profile was recorded and allowed measurements of the absolute metastable Ar(1s(5)) density integrated in the line-of-sight of the laser beam under various operating conditions of the MPJ. The results reveal a sensitive dependence of the Ar(1s(5)) density on spatial coordinates, i.e., distance from the exit of the capillary tube of the discharge and from the axis of the argon jet. The highest Ar(1s(5)) densities of about 3x10(13) cm(-3) were measured at the axis of the argon jet at longitudinal distances between 4 and 5.5 mm downstream from the nozzle of the tube. The temporal distribution of the Ar(1s(5)) density, which presents three maxima, is thoroughly discussed in this paper. The spatial distribution of the effective Ar(1s(5)) lifetime (<250 ns) is also reported, giving some insight into the surrounding environment of the argon metastable atoms. The determined spatiotemporal distributions of the Ar(1s(5)) density can be useful for the optimization of argon MPJs for different applications like surface or biomedical processes. Published under license by AIP Publishing.
机译:稀有气体中维持的大气微等离子体射流(MPJ)由于具有产生高反应性物质的潜力而受到越来越多的关注。在本文中,我们介绍了在氩气中操作的大气压MPJ中测量的,时空分辨的氩亚稳密度Ar(1s(5)),并使用可调二极管激光吸收光谱法(1s(5)-传播到环境空气中)。 > 2p(9)光学跃迁)。使用短持续时间(230 ns)高压正脉冲(4.2-6.2 kV)激励的电介质势垒放电以20 kHz的重复频率生产MPJ。记录光谱吸收线轮廓,并允许在MPJ的各种操作条件下,测量整合在激光束视线中的绝对亚稳态Ar(1s(5))密度。结果揭示了Ar(1s(5))密度对空间坐标的敏感依赖性,即距放电毛细管出口的距离和距氩射流轴线的距离。在氩喷嘴的轴线上,在管嘴下游4至5.5毫米之间的纵向距离处测得的最高Ar(1s(5))密度约为3x10(13)cm(-3)。本文全面讨论了Ar(1s(5))密度的时间分布,该分布表示三个最大值。还报告了有效Ar(1s(5))寿命(<250 ns)的空间分布,从而使您对氩亚稳原子的周围环境有一些了解。确定的Ar(1s(5))密度的时空分布可用于优化针对表面或生物医学过程等不同应用的氩气MPJ。由AIP Publishing授权发布。

著录项

  • 来源
    《Journal of Applied Physics 》 |2019年第7期| 073302.1-073302.16| 共16页
  • 作者单位

    Univ Paris Saclay Univ Paris Sud CNRS LPGP F-91045 Orsay France|King Abdullah Univ Sci & Technol Clean Combust Res Ctr Thuwal 239556900 Saudi Arabia;

    Univ Paris Saclay Univ Paris Sud CNRS LPGP F-91045 Orsay France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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